| ID |
Date |
Author |
Subject |
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763
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Tue Aug 26 14:43:44 2025 |
JM, CB, EW | CARME on, background run | 26 August
14:40
Turned CARME on
Everything started up okay, all detectors on and stable.
Note aida16 clock and ADC are uncalibrated. Note dssd4 is on MEC
Detector 1 noisy.
AIDA started - all okay.
All FEEs set to LEC (0x0) and slow comparator threshold set to 300keV (0x1e).
Currently writing to data to G22-205/R100, doing background run, ~400 kB/s.
16:40
Checks OK.
19:00
Checks OK
22:30
Temps OK, Rates OK
x2go window size weird on different monitor as well.
27th August
Stopped Run 100. We had accidently set the threshold to 140 keV (0xe) not 300 keV (0x1e) as intended.
Either way we require data on the alphas for electronics testing in October and the data rate at this threshold is too high. Threshold set to 0x64 (1 MeV) to look only at the alphas.
Run 101 started. See attached leakage currents
20:30
Checks OK
28th August
10:00
Checks OK
CARME daq crashed this afternoon. Aida14 had a disconnection error. Seemed to coincide with dssd4 tripping again.
Rebooting FEEs. On reboot there are always some FEEs which seem to have some error. The FEE changes each time. i.e aida12 one time, aida09 next time. I will give them a little while to compose themselves before trying again.
Unable to get the system writing data to disk again. I think the system is unhappy with the merger / tape server not being closed properly. Will have a proper look tomorrow.
29th August
20:15
Running again R102. 0x64 slow comparator thresholds. DSSD4 off due to leakage current tripping -> MEC
30th August
Daq continues R102
31st August
Daq continues R102
11:30
R102 stopped. CARME shutdown. This week, potentially tomorrow morning, the Kasell group will dismount the VUV spectrometer. CARME off and bias off during these works. |
| Attachment 1: bias.png
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762
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Thu Jul 17 07:07:56 2025 |
CB | CARME off | 08:07 CEST
Temperatures ok - attached
DSSDs on. Leakage currents still high. - attached
If ML & co cannot find the reason, will turn off FEEs later today
FEEs turned off, leakage current still high (DSSD off now).
Motors out. |
| Attachment 1: Capture.PNG
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| Attachment 2: 2.PNG
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| Attachment 3: 3.PNG
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| Attachment 4: Capture.PNG
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761
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Wed Jul 9 11:21:14 2025 |
EW, CB | CARME restarted - long background R98 | ---9 July---
11:00
Turned detectors on - all stable see attachment 1
AIDA started - all okay. See attachment 2 for FEE temps.
All FEEs set to LEC (0x0) and slow comparator threshold set to 300keV (0x1e). See attachment 3.
After some issues tape server and merger all set up, NetVar not working??? have tried to reboot things but still getting issues. See attachment 4 for tape service and attachment 5 for merger.
Currently writing to data to G22-205/R98 (R97 empty), doing background run.
13:30
All checks okay apart from white rabbit, see attachment 6.
Attachment 7 - stats
18:30 CEST
More issues with anydesk - now refuses to connect with error message desk_rt_ipc
May be as simple as the monitor being turned off. Will have to be checked in person
Connected to atppc025 via x2go and from there checked
- Temperatures are fine (attached)
- Detector bias / leakage current is fine (attached)
- Data rate from file size being written is around 500 kB/s (fine)
- A number of interesting features in the online background spectrum. Likely all non-physical (attached)
- Stats OK (attached)
20:50 CEST
All checks good.
22:28 CEST
All checks good.
Features in the XY plot rensemble beam hitting the detectors. Attached.
Leakage currents and rates are good - unlikely to be major detector damage. Attached.
Only beam in the ring between now and end of D+D was stable uranium.
Killed CARMEsort via terminal (still no access to anydesk).
Restarted CARMEsort. No obvious structures appear after a few minutes. Was there beam in the ring today?
23:09 CEST
All checks good
Features in the XY plot and Ey plots disappeared.
---10 July---
03:22 CEST
All checks good.
Features gone. Attached.
05:15 CEST
All checks good.
07:34 CEST
All checks good.
10:40 CEST
All checks good.
12:35 CEST
All checks good. Some features in plots again appeared in last 2 hours, attached Ey plot (attachment 15).
14:40 CEST
All checks okay.
16:40 CEST
All checks okay.
18:40 CEST
All checks okay. Attachment 16 leakage current stable.
Attachment 17 Ey plot.
19:35 CEST
All checks OK.
Reset the Root spectra again - highly unlikely to have beam overnight without experiments running.
23:39 CEST
All checks OK.
Still seeing peak at 6 MeV like attachment 17, after resetting the Root spectra. Detector damage? Still seems implausible.
Events are focussed as in attachment 12.
Reset again. No obvious peak or pattern after a few minutes running.
From Claude K
"CRYRING was running with the Uranium beam from ESR until Tuesday (8 July) night around 22:00.
From Wednesday noon we started to inject D+ from the local source and had the D+ beam stored at various energies from 14:30 until 17:40. During the night from Wednesday (9 July) to Thursday (10 July) there was no beam.
We then continued measurements with stored D+ On Thursday from ca. 11:00 to 21:00. Since then CRYRING is in shutdown."
---11 July---
08:07 CEST
All checks OK.
Peak at 6 MeV did not re-appear overnight. Attached x2.
12:00 CEST
All checks good! All plots look good!
16:00 CEST
All checks okay!
19:20 CEST
All checks OK.
Background peaks almost visible.
22:53 CEST
All checks OK.
---12 July---
07:25 CEST
All checks OK.
10:00 CEST
All checks OK. Temps attached.
11:00 CEST
All checks OK.
19:00 CEST
All checks OK.
23:00 CEST
All checks OK.
---13 July---
07:42 CEST
All checks OK.
11:00 CEST
All checks OK.
ELOG down during the afternoon
--14 July--
11:00 CEST
All checks ok.
14:40 CEST
Tape service and merger now working on atppc025
All checks ok, briefly went no storage at around 14:38 CEST for 1-2 minutes whilst getting tape service and merger up.
17:40 CEST
All checks ok.
21:30 CEST
All checks OK.
23:16 CEST
All checks OK. Several screenshots attached.
Calibration appears to hinders clear alpha peaks.
---15 July---
07:47 CEST
All checks OK.
11:55 CEST
All checks ok.
14:35 CEST
Issue with atppc025, see attachment 29 for error message (desktop 2, detectors etc)
Got error to go, all checks ok.
17:35 CEST
Same issue with atppc025, otherwise all checks ok.
20:30 CEST
All checks OK.
23:07 CEST
All checks OK
---16 July---
07:41 CEST
All checks OK
12:00 CEST
All check ok.
15:15 CEST
Some fees have high rates, all other checks ok.
15:32 CEST
The above behaviour appears to be correlated with an increase in leakage current across all four detectors. Most likely light?
The background is not reliable -> No storage.
Unfortunately the leakage current logger crashed a few days ago on the server, and without anydesk we did not realise. Restarted it on atppc025.
Informed ML about issue. If it cannot be solved we could increase the thresholds and keep going, but the background may not be representative.
16:35 CEST
Issue persists. ML and ZA are not aware of any changes, except power-saving mode enabled for cave AC. No effect on FEE temperatures - not the issue.
aida04 rates shows 0. Checkloaded. Fine for a few seconds. Back to 0. Data event rate 100,000 may be too high.
Increased thresholds to 1 MeV. Data rates lowered, but e.g. on aida04 still 40,000. Goes back to zero. Checkloaded. OK for a short while, then back to zero.
Tape server stopped. DAQ stopped - all FEEs respond, good! Merger still going.
DSSDs off. Will retry tomorrow morning.
23:44 CEST
Temps OK. |
| Attachment 1: Screenshot_2025-07-09_at_11.19.43.png
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| Attachment 2: Screenshot_2025-07-09_at_11.16.35.png
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| Attachment 3: Screenshot_2025-07-09_at_11.16.07.png
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| Attachment 4: Screenshot_2025-07-09_at_11.15.57.png
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| Attachment 5: Screenshot_2025-07-09_at_11.15.47.png
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| Attachment 6: Screenshot_2025-07-09_at_13.31.55.png
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| Attachment 7: Screenshot_2025-07-09_at_13.39.19.png
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| Attachment 8: 1.png
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| Attachment 9: 2.png
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| Attachment 10: 3.png
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| Attachment 11: 4.png
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| Attachment 12: Capture.PNG
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| Attachment 13: Capture2.PNG
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| Attachment 14: Capture.PNG
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| Attachment 15: Screenshot_2025-07-10_at_11.39.51.png
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| Attachment 16: Screenshot_2025-07-10_at_17.38.52.png
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| Attachment 17: Screenshot_2025-07-10_at_17.38.39.png
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| Attachment 18: Capture.PNG
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| Attachment 19: Capture2.PNG
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| Attachment 20: Capture.PNG
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| Attachment 21: Capture2.PNG
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| Attachment 22: 1.PNG
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| Attachment 23: 2.PNG
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| Attachment 24: 3.PNG
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| Attachment 25: 4.PNG
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| Attachment 26: 5.PNG
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| Attachment 27: 7.PNG
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| Attachment 28: 6.PNG
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| Attachment 29: IMG_4779.jpeg
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| Attachment 30: 1.PNG
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| Attachment 31: 2.PNG
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| Attachment 32: 3.PNG
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760
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Sun Jul 6 11:35:28 2025 |
CB | Anydesk version updated | Updated anydesk to 6.3.2 CentOS7 release.
Works now. |
|
759
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Sat Jul 5 08:51:33 2025 |
EBM | anydesk connection settings | |
| Attachment 1: anydesk_settings.png
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758
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Wed Jun 18 14:21:39 2025 |
CB | CARME off | 15:20
DAQ stopped
Merger & Tape Server stopped
FEEs off
All detectors off
Leakage current plot attached
Leakage current file moved to /TapeData/
Will restart for a long background when the next experiment is over. |
| Attachment 1: Screenshot_from_2025-06-18_15-18-31.png
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757
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Tue Jun 17 23:51:58 2025 |
TD, CB, JG | Run 96 - continued |
00.31 DAQ continues data file G22-205/R96_27
DSSSD bias & leakage currents - attachments 7-8
FEE64 temps OK - attachment 6
ADC data item stats - attachment 5
per FEE64 Rate spectra - attachment 4
Merger & TapeServer - attachments 2-3
Online analysis - attachment 1
Analysis data file R96_29 - attachment 9
no timewarps, all FEE64 deadtimes <<1%
04.04 FEE64 temps OK - attachment 10
ADC data item stats - attachment 11
DSSSD bias & leakage currents - attachments 12 & 15
per FEE64 Rate spectra - attachment 13
TapeServer - attachment 14
08.26 DAQ continues data file G22-205/R96_64
DSSSD bias & leakage currents - attachments 16-17
FEE64 temps OK - attachment 18
ADC data item stats - attachment 19
per FEE64 Rate spectra - attachment 20
TapeServer - attachment 21
11:03 All checks OK
EyTotal histogram attached.
12:25 Temps OK. Rates OK.
15:03 run stopped - beam time over
all checks ok
EyTotal hist attached |
| Attachment 1: Screenshot_from_2025-06-18_00-51-35.png
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| Attachment 2: Screenshot_from_2025-06-18_00-50-35.png
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| Attachment 3: Screenshot_from_2025-06-18_00-50-18.png
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| Attachment 4: Screenshot_from_2025-06-18_00-50-00.png
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| Attachment 5: Screenshot_from_2025-06-18_00-48-42.png
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| Attachment 6: Screenshot_from_2025-06-18_00-31-31.png
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| Attachment 7: Screenshot_from_2025-06-18_00-31-06.png
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| Attachment 8: Screenshot_from_2025-06-18_00-30-49.png
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| Attachment 9: R96_29
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*** TDR format 3.3.0 analyser - TD - May 2021
*** ERROR: READ I/O error: 5002
blocks: 32000
ADC data format: 261850116 ( 336634.1 Hz)
Other data format: 69888 ( 89.8 Hz)
Sample trace data format: 0 ( 0.0 Hz)
Undefined format: 0 ( 0.0 Hz)
Other data format type: PAUSE: 46 ( 0.1 Hz)
RESUME: 46 ( 0.1 Hz)
SYNC100: 34898 ( 44.9 Hz)
WR48-63: 34898 ( 44.9 Hz)
FEE64 disc: 0 ( 0.0 Hz)
MBS info: 0 ( 0.0 Hz)
Other info: 0 ( 0.0 Hz)
ADC data range bit set: 71 ( 0.1 Hz)
Timewarps: ADC: 0 ( 0.0 Hz)
PAUSE: 0 ( 0.0 Hz)
RESUME: 0 ( 0.0 Hz)
SYNC100: 0 ( 0.0 Hz)
WR48-63: 0 ( 0.0 Hz)
FEE64 disc: 0 ( 0.0 Hz)
MBS info: 0 ( 0.0 Hz)
Undefined: 0 ( 0.0 Hz)
Sample trace: 0 ( 0.0 Hz)
*** Timestamp elapsed time: 777.848 s
FEE elapsed dead time(s) elapsed idle time(s)
0 1.168 0.000
1 0.000 62.240
2 0.000 92.323
3 0.250 0.000
4 0.066 0.000
5 0.000 313.625
6 0.000 26.861
7 0.000 69.084
8 0.955 0.000
9 0.093 0.000
10 0.016 457.454
11 0.447 0.000
12 0.000 0.000
13 0.000 0.000
14 0.000 0.000
15 0.000 0.000
16 0.000 0.000
17 0.000 0.000
18 0.000 0.000
19 0.000 0.000
20 0.000 0.000
21 0.000 0.000
22 0.000 0.000
23 0.000 0.000
24 0.000 0.000
25 0.000 0.000
26 0.000 0.000
27 0.000 0.000
28 0.000 0.000
29 0.000 0.000
30 0.000 0.000
31 0.000 0.000
32 0.000 0.000
*** Statistics
FEE ADC Data Other Data Sample Undefined Pause Resume SYNC100 WR48-63 Disc MBS Other HEC Data
0 36906229 10016 0 0 10 10 4998 4998 0 0 0 41
1 10150880 2708 0 0 0 0 1354 1354 0 0 0 30
2 8283625 2156 0 0 0 0 1078 1078 0 0 0 0
3 37453715 10294 0 0 6 6 5141 5141 0 0 0 0
4 23358879 6376 0 0 4 4 3184 3184 0 0 0 0
5 4272841 1160 0 0 0 0 580 580 0 0 0 0
6 11147856 3068 0 0 0 0 1534 1534 0 0 0 0
7 9321327 2384 0 0 0 0 1192 1192 0 0 0 0
8 61453512 16278 0 0 14 14 8125 8125 0 0 0 0
9 19621565 5040 0 0 6 6 2514 2514 0 0 0 0
10 3914618 986 0 0 1 1 492 492 0 0 0 0
11 35964891 9422 0 0 5 5 4706 4706 0 0 0 0
12 36 0 0 0 0 0 0 0 0 0 0 0
13 5 0 0 0 0 0 0 0 0 0 0 0
14 137 0 0 0 0 0 0 0 0 0 0 0
15 0 0 0 0 0 0 0 0 0 0 0 0
16 0 0 0 0 0 0 0 0 0 0 0 0
17 0 0 0 0 0 0 0 0 0 0 0 0
18 0 0 0 0 0 0 0 0 0 0 0 0
19 0 0 0 0 0 0 0 0 0 0 0 0
20 0 0 0 0 0 0 0 0 0 0 0 0
21 0 0 0 0 0 0 0 0 0 0 0 0
22 0 0 0 0 0 0 0 0 0 0 0 0
23 0 0 0 0 0 0 0 0 0 0 0 0
24 0 0 0 0 0 0 0 0 0 0 0 0
25 0 0 0 0 0 0 0 0 0 0 0 0
26 0 0 0 0 0 0 0 0 0 0 0 0
27 0 0 0 0 0 0 0 0 0 0 0 0
28 0 0 0 0 0 0 0 0 0 0 0 0
29 0 0 0 0 0 0 0 0 0 0 0 0
30 0 0 0 0 0 0 0 0 0 0 0 0
31 0 0 0 0 0 0 0 0 0 0 0 0
32 0 0 0 0 0 0 0 0 0 0 0 0
*** Timewarps
FEE ADC Pause Resume SYNC100 WR48-63 Disc MBS Undefined Samples
0 0 0 0 0 0 0 0 0 0
1 0 0 0 0 0 0 0 0 0
2 0 0 0 0 0 0 0 0 0
3 0 0 0 0 0 0 0 0 0
4 0 0 0 0 0 0 0 0 0
5 0 0 0 0 0 0 0 0 0
6 0 0 0 0 0 0 0 0 0
7 0 0 0 0 0 0 0 0 0
8 0 0 0 0 0 0 0 0 0
9 0 0 0 0 0 0 0 0 0
10 0 0 0 0 0 0 0 0 0
11 0 0 0 0 0 0 0 0 0
12 0 0 0 0 0 0 0 0 0
13 0 0 0 0 0 0 0 0 0
14 0 0 0 0 0 0 0 0 0
15 0 0 0 0 0 0 0 0 0
16 0 0 0 0 0 0 0 0 0
17 0 0 0 0 0 0 0 0 0
18 0 0 0 0 0 0 0 0 0
19 0 0 0 0 0 0 0 0 0
20 0 0 0 0 0 0 0 0 0
21 0 0 0 0 0 0 0 0 0
22 0 0 0 0 0 0 0 0 0
23 0 0 0 0 0 0 0 0 0
24 0 0 0 0 0 0 0 0 0
25 0 0 0 0 0 0 0 0 0
26 0 0 0 0 0 0 0 0 0
27 0 0 0 0 0 0 0 0 0
28 0 0 0 0 0 0 0 0 0
29 0 0 0 0 0 0 0 0 0
30 0 0 0 0 0 0 0 0 0
31 0 0 0 0 0 0 0 0 0
32 0 0 0 0 0 0 0 0 0
*** Program elapsed time: 26.919s ( 1188.754 blocks/s, 74.297 Mb/s)
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| Attachment 10: Screenshot_from_2025-06-18_04-04-16.png
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| Attachment 11: Screenshot_from_2025-06-18_04-04-35.png
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| Attachment 23: Screenshot_from_2025-06-18_15-00-16.png
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756
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Tue Jun 17 19:10:07 2025 |
NH, PMH | Run 96 | 20:00 - Go to YR cave to see what is going on
20:20 - Beam back
20:28 - Set Tape to Storage, rate ca 2500 kB/s
Temperature and rate OK, System wide checks OK
Target density low (4e12/cm2)
21:00 - target density still 4e12, Ey rate histograms attached (attach 4)
21:20 - Target density increased to 6e12, we see more indication of reactions
22:30 - All checks OK, tape rate still 2500 kB/s
Target density ~7e12/cm2, beam intensity ~1e9pps
23:00 - Target density 7.5e12/cm2, beam intensity: 1e9 pps. Particle detector rate: 8 kHz at injection
Gas bottle pressure still above first tick
Target position X=-1000, Y=1400
All running smoothly. CARME DAQ running OK. (Figs 5-7) |
| Attachment 1: Screenshot_from_2025-06-17_20-28-22.png
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| Attachment 2: Screenshot_from_2025-06-17_20-28-43.png
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| Attachment 3: Screenshot_from_2025-06-17_20-58-26.png
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| Attachment 4: Screenshot_from_2025-06-17_21-02-19.png
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| Attachment 5: Screenshot_from_2025-06-17_22-59-58.png
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| Attachment 6: Screenshot_from_2025-06-17_22-59-48.png
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| Attachment 7: Screenshot_from_2025-06-17_22-59-38.png
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755
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Tue Jun 17 12:22:50 2025 |
CB EW JG AG SN | Run 94/95/96 | Run 94
Background with beam at 150 keV and no target.
Note energy is 0.15% off vs. beam and target to have a more realistic orbit.
As prior run but thresholds changed to
DSSD1 - 0xc
DSSD2 - 0x8
DSSD3 - 0x8
DSSD4 - MEC
Run 95
DSSD 4 worked briefly. Tripped again a few minutes into this run. Ignore
Run 96 - as run 94
run stopped at 14:00
Zoran reset to with-target settings for later
The plotted readout for the G35 voltage divider over several injections for this run is attached. This kind of data can be obtained from Konstantin also after the experiment.
The average is something like 88.4808 V. |
| Attachment 1: G35Voltage.pdf
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754
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Tue Jun 17 12:14:30 2025 |
EW, CB, AG | Run 93- Background with beam 150keV | Run 93- New run at 150keV, background with beam
13:15 All checks ok |
| Attachment 1: Screenshot_from_2025-06-17_13-16-52.png
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| Attachment 2: Screenshot_from_2025-06-17_13-16-49.png
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| Attachment 3: Screenshot_from_2025-06-17_13-16-45.png
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| Attachment 4: Screenshot_from_2025-06-17_13-16-43.png
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753
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Tue Jun 17 08:04:09 2025 |
EW, AG, CB | Run 92- Background with beam 90keV | Run 92- started at 09:00, background with beam
Same settings as run 91
See attachments for rates etc
All checks okay
09:58 Run stopped as now tuning 150keV beam
10:00 All checks ok
10:25 D2 bottle pack pressure 30 bar approximately
12:18 All checks ok |
| Attachment 1: Screenshot_from_2025-06-17_09-03-43.png
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| Attachment 2: Screenshot_from_2025-06-17_09-03-38.png
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| Attachment 3: Screenshot_from_2025-06-17_09-03-34.png
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| Attachment 4: Screenshot_from_2025-06-17_09-03-29.png
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752
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Mon Jun 16 22:06:00 2025 |
CB, AR, EW | RUN 90-91 | 23:00 DAQ restored and data now being written okay. Checks all okay, see screenshots below. Histograms reset. 40 bars in bottle @ 23:45 - should last 30 hours.
12:00 Checks all ok. No problems with aidas or writing to disk.
01:10 Checks all ok.
02:05 Checks all ok. See attatchment 6 for peak update after reset histograms 3 hours prior. Target okay, dropped a little to 6e12 but seems to be going up itself. Will monitor and then move position if needed.
03:10 During checks, noticed detector 4 had tripped so turned it off. Writing to disk increased alot, statistics increased to alost 250000. Put aida13-16 in low/medium energy. Started new run. (see attatchment 7-14 for before and afters)
RUN 91
03:15 Checks all ok after turning off detector 4. Moved target around and got abit more density but x is very sensitive and y did not seem to do much. Density 5.5e12.
04:30 Checks all ok. Target decreasing in density - monitoring it.
04:35 Target density back up to 1e13 after moving in y.
05:30 Checks all ok. Target density decreased slightly to 8e12
06:30 Checks all ok, target density stable for past hour
07:30 Checks all ok
08:30 Checks all ok, target density at 1e13 for past two hours
09:00 Run stopped
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| Attachment 1: Screenshot_from_2025-06-16_23-08-33.png
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| Attachment 2: Screenshot_from_2025-06-16_23-08-17.png
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| Attachment 6: Screenshot_from_2025-06-17_02-06-51.png
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| Attachment 13: Screenshot_from_2025-06-17_02-55-25.png
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| Attachment 14: Screenshot_from_2025-06-17_02-06-51.png
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751
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Mon Jun 16 21:58:00 2025 |
CB AR | Runs 84-89 | Found all Merger Links background black - inactive. Nontheless the tapeservice was working, the data rate to disk was normal, and the file was being written and the histograms were being updated.
Decided to stop DAQ, stop Merger, restart merger. Links rest to green background - but no more writing to disk!
Killed Merger, killed Tape Service. Restarted.
Netvar read out at 3 - set to 1. When the Output of the Merger is enabled Netvar returns to 3. Tapeservice not writing to disk
Killed Merger, killed Tape Service. Restarted x3. Same behaviour.
Not working. No blocks being written.
With Tape Server status Stopped Ticked No storage, Unticked No storage -> Now writing blocks ?!
Tape Server Go. Writing to disk. Merger OK. Histograms updated, observables as normal (see next ELOG).
Lost runs 84-89 in the process. |
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750
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Mon Jun 16 11:12:22 2025 |
JG, AK, AR, EH | run 83 | 12:15 restarted measurement with target - Run 83
same settings as for runs 76, 77 etc
ROOT histograms NOT zeroed
Beam at 8e8, target density at 1.5e13, scintillator @ 0 deg. peak rate 5000
status screenshots attached
15:15: Checks all ok, peaks are peaky (attatchment 8)
16:45 Checks all ok.
17:45 Checks all ok. IMP Froze and has been restarted. Peaks good. Light turned off iin cave.
18:40: Checks all ok. Target great at 1e13.
22:20 Checks done - all okay except aida green-to-red was not working, but still writing data to disk. Carlo trying to figure it out now. All other checks were okay. Daedalus crashed, restarted and target still at 1e13. |
| Attachment 1: Screenshot_from_2025-06-16_12-16-08.png
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| Attachment 2: Screenshot_from_2025-06-16_12-15-34.png
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| Attachment 3: Screenshot_from_2025-06-16_12-15-19.png
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| Attachment 4: Screenshot_from_2025-06-16_12-15-07.png
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| Attachment 5: Screenshot_from_2025-06-16_12-14-53.png
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| Attachment 6: Screenshot_from_2025-06-16_12-14-42.png
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| Attachment 7: Screenshot_from_2025-06-16_14-55-13.png
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| Attachment 8: Screenshot_from_2025-06-16_15-19-14.png
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749
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Mon Jun 16 10:46:11 2025 |
CB JM JG AK | Run82 | Background without beam while source is optimised. |
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748
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Mon Jun 16 08:17:41 2025 |
JG | D2 consumption | The current bottle of D2 was installed on friday 06.06. at around 12:00. I assume we started at 200 bar.
Right now we have 50 bar remaining in this bottle (16.06. at 8:00).
This is an average consumption of ~15 bar/day
150 bar / 9.83 days
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747
|
Sun Jun 15 10:46:35 2025 |
EW, EM, AR, AB, CB, JG, AK | Run 81 | 11:45 New run started - run 81, same settings as previous runs (75, 76 etc)
ROOT histograms NOT zeroed
Beam at 2.5e8, target density at 3e12
11:50 All checks okay
12:45 All checks okay
13:45 All checks okay
14:45 All checks okay
15:45 All checks okay.
17:00 All Checks okay. Target temp manually dropped from 30.4K to 30.1K to try and improve density as would not get much above 2.5-3ish. Also played with target position for a while - now seemed to have stabilised it at 4.5e12 as of now.
18:00 All checkd okay. Target been stable at 4.5-5.3e12.
18:20 Done checks again (all ok) as the beam is being a little stange. Attatched ss of peaky peaks (some of them very nice) but detector 3 histogram wont cooperate and wont let me see the counts if I zoom further down, but can see proton peak fine. Seeing periodic spikes in the counts plot for the particle detector - monitoring. Also the tail of the beam seems more red than usual.
19:00 More photos of strange spikes in the counts for particle detector uploaded. Sometimes, the baseline has decent sized spikes too. Attatchments 10-14
19:20 Checks ok. Traget stable. Spikes in particle detector seem to be more frequent, uploading more photos below. Also attatched peaks at this stage (attatchemtn 15).
19:36 Very strange spikes in particle det. Two bigish peaks at baseline and then strange beginning at the injection. Attatchment 19.
19:45 Another spike in the baseline for particle det. Attatchment 20.
20:25 Checks ok. Spikes still in particle det plot.
21:20 Checks ok. Screenshot of peaks in attatchment 21.
22:20 Checks ok. Target been relativly stable all shift at 5e12. Spikes still periodically turning up in particle detector. Histograms are gaining counts, attatchment 22 is the peaks.
22:30 Target suddenly got really dense up to 1e13. Lifetime of the beam is ok. Trending down slowly. Did checks again and all is good.
01:45. Checks OK. Target seems thick.
04:30
Temperatures OK - attach
Rates OK - attach
Merger OK - attach
Hisograms look OK - attached
Target looks very thick from ring vacuum worsening.
7:15 all checks okay - historgams attached
beam 2e8, target 1e13, scintillator rate 2000 in peak
10:00
Run stopped to gain cave access.
Before beam was stopped, target was moved out. We still see some signal on the neutral particle detector, roughly a factor 10 below with target on at 1e13 at/cm2
Will need a beam background run for normalisation procedure. See attachment 29
10:30
Now we have no beam in the ring we still observe some events in the neutrals detector. Some spikes up to 150 counts observed, could explain some of what we have seen so far. See attachment 30
Note we are saving all this data to MBS so it is effectively background for the neutral detector. |
| Attachment 1: Screenshot_from_2025-06-15_11-50-19.png
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| Attachment 2: Screenshot_from_2025-06-15_11-50-10.png
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| Attachment 3: Screenshot_from_2025-06-15_11-50-07.png
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| Attachment 4: Screenshot_from_2025-06-15_11-49-32.png
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| Attachment 5: Screenshot_from_2025-06-15_18-23-17.png
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| Attachment 6: Screenshot_from_2025-06-15_18-23-35.png
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| Attachment 15: Screenshot_from_2025-06-15_19-17-14.png
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| Attachment 16: IMG_7043.JPG
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| Attachment 17: IMG_7036.JPG
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| Attachment 18: IMG_7039.JPG
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| Attachment 20: IMG_7050.JPG
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| Attachment 21: Screenshot_from_2025-06-15_21-23-20.png
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| Attachment 22: Screenshot_from_2025-06-15_22-21-21.png
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| Attachment 23: Screenshot_from_2025-06-16_04-29-10.png
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| Attachment 24: Screenshot_from_2025-06-16_04-29-00.png
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| Attachment 25: Screenshot_from_2025-06-16_04-28-51.png
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| Attachment 26: Screenshot_from_2025-06-16_04-28-40.png
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| Attachment 27: Screenshot_from_2025-06-16_04-28-26.png
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| Attachment 28: Screenshot_from_2025-06-16_07-20-26.png
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| Attachment 29: 20250616_100644.jpg
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| Attachment 30: 20250616_104229.jpg
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746
|
Sun Jun 15 07:01:37 2025 |
EW, EM | Run 80 | 08:00 New run started - run 80
Run whilst they are optimising the beam after losing it, everything else same as previous runs
ROOT histograms NOT zeroed
All checks fine
09:05 All checks okay
Attachment 5 current histograms zoomed into area of interest, detector 3 only proton peak visible
10:00 All checks okay
11:00 All checks okay
11:45 Run stopped as beam is back |
| Attachment 1: Screenshot_from_2025-06-15_08-09-05.png
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| Attachment 2: Screenshot_from_2025-06-15_08-09-00.png
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| Attachment 3: Screenshot_from_2025-06-15_08-08-05.png
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| Attachment 4: Screenshot_from_2025-06-15_08-07-56.png
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| Attachment 5: Screenshot_from_2025-06-15_09-55-36.png
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745
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Fri Jun 13 19:41:32 2025 |
JG, SHB, JM, AR, EW, OF | Run 77, 78, 79 | New run started - Run 77 after refilling LN2 dewar
Same settings as Run 75 & 76
The root histos have not been reset, i.e. they show combined statistics of run 75, 76 and 77.
20:45 - all checks OK
22:00 - all checks OK
00:10
Observed no data writing to disk. Checked merger no data merging. No ADC data items. Seems daq crashed again.
Appears aida09 had crashed causing system to stop. Tried fix suggested in earlier elog by Tom. No success. All FEEs show error and system became unresponsive.
Power cycling FEEs.
00:30
New run started Run 78. Same conditions as previous runs.
All thresholds remain unchanged ->0x28 (400 keV)
Had to reset monitoring histograms as they were unresponsive too.
All system checks OK.
Data rate is ~300 kB/sec
ADC data items rate is similar to previous run (screenshot already attached)
Detector leakage currents look OK. Plots attached.
WS6 (elog and internet) appeared to freeze before. This could be similar to the issue osserved last weekend. All seems fine now and DAQ continues. Should keep an eye on it.
02:00
Checls OK
05:00
Checks OK
7:10 Checks OK. Target was fluctuating over night, dropped around midnight then back up but had no target for about 2-3 hours overnight. Fixed target thickness this morning and now have 5e12.
8:15 Checks Ok.
9:15 Checks Ok.
10:15 Checks ok. Target good at 5e12. Attatched screenshots of the peaky peaks so far (can't put numbers on excel as lost the ability to see it - see 9 10 and 11)
11:35 All checks ok. Screenshot of peaks attatchment 12 (decently peaky).
12:30 All checks ok. Peaks are beginning to show, especially proton and triton but on det 3, cant distinguish trition from noise peak so no value in spreadhseet for that. Target stable at 4.8e12.
13:30 All Checks ok.
14:30 All Checks ok.
15:40 All checks okay, lost beam at 15:25, let HKR know and they are looking into it, have put to no storage.
16:35 All checks okay, still no beam, taget is steady at 3e12
17:35 All checks okay, beam is back but being optimised
18:33 New run started- run 79, same settings as previous runs, did NOT reset histograms, beam now 2e8 (previously was 7e8)
18:33 All checks okay apart from temp of aida 3 which is a little high (see attachment 13), rates also attached (attachemnt 14), current histogram attached (15)
19:35 All checks okay, aida 3 temp now back within range, target density dropped but have managed to get it back up to 2e12
21:30 All checks okay, target has been very unstable, beam now at 3.8e8
22:30 All checks fine, target at 3e12 for past 45 minutes, beam at 4e8, current histogram attachment 16
23:40 All checks ok. Integral value for range to 4000 seems to be increasing for all histograms - meaning target is probably ok for now. Vacuum plot doesnt show any issues.
02:00 All checks ok. Integral values for proton peak have increased so assuming target is still holding as of now (only peak I can clearly isolate to get value from) - no indication that it is off via vacuum plot.
5:00 All Checks ok. Integral values increasing.
7:00 All checks ok, can't see target density as of 6:20
08:00 Run stopped as lost beam, histogram attachment 17
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| Attachment 1: .png
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| Attachment 2: Screenshot_from_2025-06-13_20-45-21.png
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| Attachment 3: Screenshot_from_2025-06-13_20-44-58.png
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| Attachment 4: Screenshot_from_2025-06-13_20-44-31.png
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| Attachment 5: Screenshot_from_2025-06-13_20-43-48.png
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| Attachment 6: Screenshot_from_2025-06-13_20-43-28.png
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| Attachment 7: Screenshot_from_2025-06-13_20-43-10.png
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| Attachment 8: Screenshot_from_2025-06-14_00-39-34.png
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| Attachment 9: Screenshot_from_2025-06-14_10-11-30.png
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| Attachment 10: Screenshot_from_2025-06-14_10-13-13.png
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| Attachment 11: Screenshot_from_2025-06-14_10-16-10.png
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| Attachment 12: Screenshot_from_2025-06-14_11-35-13.png
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| Attachment 13: Screenshot_from_2025-06-14_18-35-11.png
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| Attachment 14: Screenshot_from_2025-06-14_18-38-46.png
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| Attachment 15: Screenshot_from_2025-06-14_18-36-26.png
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| Attachment 16: Screenshot_from_2025-06-14_22-31-01.png
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| Attachment 17: Screenshot_from_2025-06-15_08-05-50.png
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744
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Fri Jun 13 16:39:18 2025 |
JG, SHB | Run 76 | Same settings as run 75.
Detector 4 is biased at 100V and switched from MEC to LEC.
The root histos have not been reset, i.e. they show combined statistics of run 75 and 76.
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| Attachment 1: Screenshot_from_2025-06-13_17-44-59.png
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| Attachment 2: Screenshot_from_2025-06-13_17-44-42.png
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| Attachment 3: Screenshot_from_2025-06-13_17-43-52.png
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| Attachment 4: Screenshot_from_2025-06-13_17-43-37.png
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| Attachment 5: Screenshot_from_2025-06-13_17-43-18.png
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| Attachment 6: Screenshot_from_2025-06-13_17-42-59.png
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| Attachment 7: Screenshot_from_2025-06-13_16-01-44.png
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743
|
Fri Jun 13 14:45:58 2025 |
JG, SS, JM, CB, EW, AR | Run 75 |
90 keV/u beam on target, Target overlap confirmed with lifetime measurement using bunched beam - @ -12.5mm
We do not expect to see see Rutherford due to energy loss in the dead layer, using other particle detector for normalsiation.
Moved detectors in with servos only. Both arms are IN and stationary.
Left potentiometer = 36.54 mm
Right potentiometer = 37.96 mm
Horizontal beam position = -12.5 mm
Thresholds increased for all to 0x28 (400keV)
data rate is ~0.7 MB/sec
Electron cooler read values; Cooler voltage = 50V (dodgy accuracy need to ask about fc20 on monday), cooler current=0.26 mA.
15:50 All Checks ok. Overlap on beam found. Target at 4e12. Bottle at 90 bars.
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| Attachment 1: Screenshot_from_2025-06-13_16-01-44.png
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| Attachment 2: 2025-06-13_15-59-53_YRT1_CRYRING_2025_D_Bruno_90keV.C1.txt
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# Version: 1.3
# Comment: ParamModi Export at 2025-06-13T16:00:01.262304648+02:00[Europe/Berlin]
# Context: YRT1_CRYRING_2025_D_Bruno.C1
# Columns: PARAMETERNAME,VALUE,UNIT,BEAMPROCESSPURPOSE
LOGICAL.SOURCE_HV/U,20000.0,V,TRANSFER_INJECTION
YRT1_TO_YRT1LQ1_BEAM/BEAM_MODE_S,NO_BEAM,,TRANSFER_INJECTION
YRT1_TO_YRT1LQ1_BEAM/PARTICLE_SYMBOL_S,2H,,TRANSFER_INJECTION
YRT1_TO_YRT1LQ1_BEAM/Q_S,1,,TRANSFER_INJECTION
YRT1_TO_YRT1LQ1_TIMEPARAM/TIMING_BI_DELAY_S,2.0E-4,s,TRANSFER_INJECTION
YRT1_TO_YRT1LQ1_TIMEPARAM/TIMING_BI_WINDOW_S,0.002,s,TRANSFER_INJECTION
YRT1_TO_YRT1LQ1_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,BEAMOUT_INIT
YRT1_TO_YRT1LQ1_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,TRANSFER_INJECTION
YRT1_TO_YRT1LQ1_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,STATIC
YRT1_TO_YRT1LQ1_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,STATIC
YRT1_TO_YRT1LQ1_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,STATIC
YRT1_TO_YRT1LQ1_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,STATIC
YRT1_TO_YRT1LQ1_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,STATIC
YRT1_TO_YRT1LQ1_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,STATIC
YRT1_TO_YRT1LQ1_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,STATIC
YRT1_TO_YRT1LQ1_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,STATIC
YRT1_TO_YRT1LQ1_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,STATIC
YRT1_TO_YRT1LQ1_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,BEAMOUT_RESET
YRT1_TO_YRT1LQ1_TIMEPARAM/TIMING_SOURCE_PULSE_LENGTH_S,0.0024,s,TRANSFER_INJECTION
YRT1_TO_YRT1LQ1_TIMEPARAM/T_BP_LENGTH_S,0.12,s,BEAMOUT_INIT
YRT1_TO_YRT1LQ1_TIMEPARAM/T_BP_LENGTH_S,0.11,s,TRANSFER_INJECTION
YRT1_TO_YRT1LQ1_TIMEPARAM/T_BP_LENGTH_S,0.0,s,STATIC
YRT1_TO_YRT1LQ1_TIMEPARAM/T_BP_LENGTH_S,0.0,s,STATIC
YRT1_TO_YRT1LQ1_TIMEPARAM/T_BP_LENGTH_S,0.0,s,STATIC
YRT1_TO_YRT1LQ1_TIMEPARAM/T_BP_LENGTH_S,0.0,s,STATIC
YRT1_TO_YRT1LQ1_TIMEPARAM/T_BP_LENGTH_S,0.0,s,STATIC
YRT1_TO_YRT1LQ1_TIMEPARAM/T_BP_LENGTH_S,0.0,s,STATIC
YRT1_TO_YRT1LQ1_TIMEPARAM/T_BP_LENGTH_S,0.0,s,STATIC
YRT1_TO_YRT1LQ1_TIMEPARAM/T_BP_LENGTH_S,0.0,s,STORAGE_MANIP_PERFORM
YRT1_TO_YRT1LQ1_TIMEPARAM/T_BP_LENGTH_S,---,s,STORAGE_MANIP_WAIT
YRT1_TO_YRT1LQ1_TIMEPARAM/T_BP_LENGTH_S,---,s,STORAGE_MANIP_RESTART_FGS
YRT1_TO_YRT1LQ1_TIMEPARAM/T_BP_LENGTH_S,---,s,STATIC
YRT1_TO_YRT1LQ1_TIMEPARAM/T_BP_LENGTH_S,---,s,STATIC
YRT1_TO_YRT1LQ1_TIMEPARAM/T_BP_LENGTH_S,0.12,s,BEAMOUT_RESET
YRT1LQ1_TO_YRT1LC1_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,BEAMOUT_INIT
YRT1LQ1_TO_YRT1LC1_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,TRANSFER_INJECTION
YRT1LQ1_TO_YRT1LC1_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,STATIC
YRT1LQ1_TO_YRT1LC1_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,STATIC
YRT1LQ1_TO_YRT1LC1_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,STATIC
YRT1LQ1_TO_YRT1LC1_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,STATIC
YRT1LQ1_TO_YRT1LC1_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,STATIC
YRT1LQ1_TO_YRT1LC1_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,STATIC
YRT1LQ1_TO_YRT1LC1_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,STATIC
YRT1LQ1_TO_YRT1LC1_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,STATIC
YRT1LQ1_TO_YRT1LC1_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,STATIC
YRT1LQ1_TO_YRT1LC1_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,BEAMOUT_RESET
LOGICAL.YRT1KH1/HKICK,0.001,rad,TRANSFER_INJECTION
LOGICAL.YRT1KV1/VKICK,0.005,rad,TRANSFER_INJECTION
LOGICAL.YRT1LC1_V/ACTIVE_S,true,,TRANSFER_INJECTION
LOGICAL.YRT1LC1_V/THIGH_S,2.0E-4,s,TRANSFER_INJECTION
LOGICAL.YRT1LC1_V/TOFFSET_S,5.0E-4,s,TRANSFER_INJECTION
LOGICAL.YRT1LC1_V/U,2000.0,V,TRANSFER_INJECTION
LOGICAL.YRT1LD21/ASYMMETRY_KNOB_S,0.0,,TRANSFER_INJECTION
LOGICAL.YRT1LD21/HOR_STEER_KNOB_S,0.0,,TRANSFER_INJECTION
LOGICAL.YRT1LD21/U_QUAD,-350.0,V,TRANSFER_INJECTION
LOGICAL.YRT1LD21/VER_STEER_KNOB_S,0.05,,TRANSFER_INJECTION
LOGICAL.YRT1LD22/ASYMMETRY_KNOB_S,0.0,,TRANSFER_INJECTION
LOGICAL.YRT1LD22/U_QUAD,350.0,V,TRANSFER_INJECTION
LOGICAL.YRT1LT31/ASYMMETRY_KNOB_S,0.0,,TRANSFER_INJECTION
LOGICAL.YRT1LT31/U_QUAD,680.0,V,TRANSFER_INJECTION
LOGICAL.YRT1LT32/ASYMMETRY_KNOB_S,0.0,,TRANSFER_INJECTION
LOGICAL.YRT1LT32/U_QUAD,-680.0,V,TRANSFER_INJECTION
LOGICAL.YRT1LT33/ASYMMETRY_KNOB_S,0.0,,TRANSFER_INJECTION
LOGICAL.YRT1LT33/U_QUAD,680.0,V,TRANSFER_INJECTION
LOGICAL.YRT1LT41/ASYMMETRY_KNOB_S,0.0,,TRANSFER_INJECTION
LOGICAL.YRT1LT41/U_QUAD,-1520.0,V,TRANSFER_INJECTION
LOGICAL.YRT1LT42/ASYMMETRY_KNOB_S,0.0,,TRANSFER_INJECTION
LOGICAL.YRT1LT42/U_QUAD,2080.0,V,TRANSFER_INJECTION
LOGICAL.YRT1LT43/ASYMMETRY_KNOB_S,0.0,,TRANSFER_INJECTION
LOGICAL.YRT1LT43/U_QUAD,-1550.0,V,TRANSFER_INJECTION
LOGICAL.YRT1MH1/HKICK,0.006,rad,TRANSFER_INJECTION
LOGICAL.YRT1MH1/K0L_THEO,-1.57079,rad,TRANSFER_INJECTION
YRT1LC1_TO_YRT1MH2_TIMEPARAM/TIMING_BI_DELAY_S,1.0E-6,s,TRANSFER_INJECTION
YRT1LC1_TO_YRT1MH2_TIMEPARAM/TIMING_BI_WINDOW_S,1.0E-6,s,TRANSFER_INJECTION
YRT1LC1_TO_YRT1MH2_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,BEAMOUT_INIT
YRT1LC1_TO_YRT1MH2_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,TRANSFER_INJECTION
YRT1LC1_TO_YRT1MH2_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,STATIC
YRT1LC1_TO_YRT1MH2_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,STATIC
YRT1LC1_TO_YRT1MH2_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,STATIC
YRT1LC1_TO_YRT1MH2_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,STATIC
YRT1LC1_TO_YRT1MH2_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,STATIC
YRT1LC1_TO_YRT1MH2_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,STATIC
YRT1LC1_TO_YRT1MH2_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,STATIC
YRT1LC1_TO_YRT1MH2_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,STATIC
YRT1LC1_TO_YRT1MH2_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,STATIC
YRT1LC1_TO_YRT1MH2_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,BEAMOUT_RESET
YRT1LC1_TO_YRT1MH2_TIMEPARAM/TIMING_RF_LEAD_S,4.0E-4,s,TRANSFER_INJECTION
LOGICAL.YRT1BR1/ACT_ON_BEAM_S,true,,TRANSFER_INJECTION
LOGICAL.YRT1BR1/THIGH_S,0.0025,s,TRANSFER_INJECTION
LOGICAL.YRT1BR1/URF0_S,0.14,V,TRANSFER_INJECTION
LOGICAL.YRT1BR1/U_PAUSE_PULSE_AMPL_S,4.76,V,TRANSFER_INJECTION
LOGICAL.YRT1KH2/HKICK,-2.0E-4,rad,TRANSFER_INJECTION
LOGICAL.YRT1KV2/VKICK,0.0,rad,TRANSFER_INJECTION
LOGICAL.YRT1LD51/ASYMMETRY_KNOB_S,0.0,,TRANSFER_INJECTION
LOGICAL.YRT1LD51/U_QUAD,12000.0,V,TRANSFER_INJECTION
LOGICAL.YRT1LD52/ASYMMETRY_KNOB_S,0.0,,TRANSFER_INJECTION
LOGICAL.YRT1LD52/U_QUAD,-6500.0,V,TRANSFER_INJECTION
LOGICAL.YRT1QD61/K1L,1.7,1/m,TRANSFER_INJECTION
LOGICAL.YRT1QD62/K1L,-1.7,1/m,TRANSFER_INJECTION
LOGICAL.YRT1QD71/K1L,1.5,1/m,TRANSFER_INJECTION
LOGICAL.YRT1QD72/K1L,-1.5,1/m,TRANSFER_INJECTION
YRT1BR1_TO_YRT1MH2_BEAM/E_S,298000.0,eV/u,TRANSFER_INJECTION
YRT1BR1_TO_YRT1MH2_RF/PHASE_OFFSET_S,0.0,deg,TRANSFER_INJECTION
LOGICAL.GHTYKH4/HKICK,0.0,rad,TRANSFER_INJECTION
LOGICAL.GHTYKV3/VKICK,0.0015,rad,TRANSFER_INJECTION
LOGICAL.GHTYKV4/VKICK,-0.002,rad,TRANSFER_INJECTION
LOGICAL.GHTYQD41/K1L,1.4,1/m,TRANSFER_INJECTION
LOGICAL.GHTYQD42/K1L,-1.2,1/m,TRANSFER_INJECTION
LOGICAL.YR01LP1I/ESEP_HKICK_S,0.02,rad,TRANSFER_INJECTION
LOGICAL.YR01LP1I/ESEP_K0L_THEO_S,-0.05,rad,TRANSFER_INJECTION
LOGICAL.YR01LP2I/ESEP_HKICK_S,-0.03,rad,TRANSFER_INJECTION
LOGICAL.YR01LP2I/ESEP_K0L_THEO_S,0.055,rad,TRANSFER_INJECTION
LOGICAL.YR01MP1I/HKICK,0.0026,rad,TRANSFER_INJECTION
LOGICAL.YR01MP1I/K0L_THEO,0.29322,rad,TRANSFER_INJECTION
LOGICAL.YRT1MH2/HKICK_ESR_S,-0.61087,rad,TRANSFER_INJECTION
LOGICAL.YRT1MH2/HKICK_LOCAL_S,-0.021,rad,TRANSFER_INJECTION
LOGICAL.YRT1MH2/K0L_THEO,-0.61087,rad,TRANSFER_INJECTION
YRT1MH2_TO_CRYRING_TIMEPARAM/TIMING_BI_DELAY_S,1.0E-6,s,TRANSFER_INJECTION
YRT1MH2_TO_CRYRING_TIMEPARAM/TIMING_BI_WINDOW_S,1.0E-6,s,TRANSFER_INJECTION
YRT1MH2_TO_CRYRING_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,BEAMOUT_INIT
YRT1MH2_TO_CRYRING_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,TRANSFER_INJECTION
YRT1MH2_TO_CRYRING_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,STATIC
YRT1MH2_TO_CRYRING_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,STATIC
YRT1MH2_TO_CRYRING_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,STATIC
YRT1MH2_TO_CRYRING_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,STATIC
YRT1MH2_TO_CRYRING_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,STATIC
YRT1MH2_TO_CRYRING_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,STATIC
YRT1MH2_TO_CRYRING_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,STATIC
YRT1MH2_TO_CRYRING_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,STATIC
YRT1MH2_TO_CRYRING_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,STATIC
YRT1MH2_TO_CRYRING_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,BEAMOUT_RESET
YRT1MH2_TO_CRYRING_TIMEPARAM/TIMING_SEPTUM_TRIGGER_OFFSET_S,0.0,s,TRANSFER_INJECTION
CRYRINGB2B/B2B_SID_EXT_S,---,,RING_INJECTION
CRYRINGB2B/B2B_SOURCE_KICKER_DELAY_S,---,s,RING_INJECTION
CRYRINGB2B/B2B_SOURCE_TRIGGER_OFFSET_S,---,deg,RING_INJECTION
CRYRINGB2B/B2B_TRIGGER_OFFSET_S,0.0,deg,RING_INJECTION
CRYRINGB2B/B2B_TRIGGER_OFFSET_TIME_S,0.0,,RING_INJECTION
CRYRINGBEAM/BEAM_MODE_S,NO_BEAM,,RING_INJECTION
CRYRINGBEAM/BRHO_CHIMNEY_S,---,Tm,BEAMOUT_INIT
CRYRINGBEAM/BRHO_CHIMNEY_S,---,Tm,BEAMOUT_RESET
CRYRINGBEAM/BRHO_DISPLAY_S,0.1583,Tm,RING_INJECTION
CRYRINGBEAM/BRHO_DISPLAY_S,0.087,Tm,RING_RF_MANIPULATION
CRYRINGBEAM/BRHO_DISPLAY_S,0.087,Tm,RING_TARGET
CRYRINGBEAM/BRHO_START_END_S,[0.15826692, 0.15826692],Tm,RING_INJECTION
CRYRINGBEAM/BUCKETFILL_RAW_S,[[0.0, 0.0]],,RING_INJECTION
CRYRINGBEAM/BUCKETFILL_RAW_S,[[0.0, 1.2]],,RING_BUNCHING
CRYRINGBEAM/BUCKETFILL_RAW_S,[[1.2, 1.2]],,RING_RAMP
CRYRINGBEAM/BUCKETFILL_RAW_S,[[1.2, 1.2]],,RING_RF_MANIPULATION
CRYRINGBEAM/BUCKETFILL_RAW_S,[[1.2, 1.2]],,RING_RAMP
CRYRINGBEAM/BUCKETFILL_RAW_S,[[1.2, 0.0]],,RING_REBUNCHING
CRYRINGBEAM/BUCKETFILL_RAW_S,[[0.0, 0.0]],,RING_TARGET
CRYRINGBEAM/BUCKETFILL_RAW_S,[[0.0, 0.0]],,RING_INTERMEDIATE
CRYRINGBEAM/BUCKETFILL_SIMPLE_S,1.2,,RING_INJECTION
CRYRINGBEAM/CHIMNEY_B,---,,BEAMOUT_INIT
CRYRINGBEAM/CHIMNEY_B,---,,BEAMOUT_RESET
CRYRINGBEAM/CH_END_S,5.0655,,RING_INJECTION
CRYRINGBEAM/CH_END_S,5.0655,,RING_RAMP
CRYRINGBEAM/CH_END_S,5.0655,,RING_RAMP
CRYRINGBEAM/CH_END_S,---,,STORAGE_MANIP_WAIT
CRYRINGBEAM/COASTING_BEAM_B,true,,RING_REBUNCHING
CRYRINGBEAM/CV_END_S,-5.3921,,RING_INJECTION
CRYRINGBEAM/CV_END_S,-5.3921,,RING_RAMP
CRYRINGBEAM/CV_END_S,-5.3921,,RING_RAMP
CRYRINGBEAM/CV_END_S,---,,STORAGE_MANIP_WAIT
CRYRINGBEAM/DELTAR,0.0,m,RING_INJECTION
CRYRINGBEAM/DELTAR,0.0,m,RING_RF_MANIPULATION
CRYRINGBEAM/DELTAR,0.0,m,STORAGE_MANIP_WAIT
CRYRINGBEAM/DELTAR,0.0,m,RING_TARGET
CRYRINGBEAM/DELTAR,0.0,m,RING_INTERMEDIATE
CRYRINGBEAM/DPBL,0.0,,RING_INJECTION
CRYRINGBEAM/DPBL,0.0,,STORAGE_MANIP_WAIT
CRYRINGBEAM/DPFREV,0.003,,RING_INJECTION
CRYRINGBEAM/DPFREV,0.014,,RING_RF_MANIPULATION
CRYRINGBEAM/DPFREV,0.014,,STORAGE_MANIP_WAIT
CRYRINGBEAM/DPFREV,0.014,,RING_TARGET
CRYRINGBEAM/DPFREV,0.014,,RING_INTERMEDIATE
CRYRINGBEAM/DP_OVER_P_S,0.0013,,RING_INJECTION
CRYRINGBEAM/E_S,298000.0,eV/u,RING_INJECTION
CRYRINGBEAM/E_S,90000.0,eV/u,RING_RAMP
CRYRINGBEAM/E_S,90000.0,eV/u,RING_RAMP
CRYRINGBEAM/FINAL_HARMONIC_S,2,,RING_RF_MANIPULATION
CRYRINGBEAM/FREV,140270.3399,Hz,RING_INJECTION
CRYRINGBEAM/FREV,77786.0577,Hz,RING_RF_MANIPULATION
CRYRINGBEAM/FREV,77786.0577,Hz,RING_TARGET
CRYRINGBEAM/H_INPUT_S,2,,RING_INJECTION
CRYRINGBEAM/INJ_EMIH_S,1.0E-5,m*rad,RING_INJECTION
CRYRINGBEAM/INJ_EMIL_S,0.006189628151069671,eVs/u,RING_INJECTION
CRYRINGBEAM/INJ_EMIV_S,1.0E-5,m*rad,RING_INJECTION
CRYRINGBEAM/KL_AMPL_S,0.0,,RING_INJECTION
CRYRINGBEAM/KL_AMPL_S,0.0,,RING_BUNCHING
CRYRINGBEAM/KL_AMPL_S,0.0,,RING_POST_INJECTION
CRYRINGBEAM/KL_AMPL_S,0.0,,RING_MANI_PRE_RAMP
CRYRINGBEAM/KL_AMPL_S,0.0,,RING_RAMP
CRYRINGBEAM/KL_AMPL_S,0.0,,RING_RF_MANIPULATION
CRYRINGBEAM/KL_AMPL_S,0.0,,RING_RAMP
CRYRINGBEAM/KL_AMPL_S,0.0,,RING_REBUNCHING
CRYRINGBEAM/KL_AMPL_S,0.0,,RING_TARGET
CRYRINGBEAM/KL_AMPL_S,0.0,,RING_INTERMEDIATE
CRYRINGBEAM/KL_HARM_S,1,,RING_INJECTION
CRYRINGBEAM/KL_HARM_S,1,,RING_BUNCHING
CRYRINGBEAM/KL_HARM_S,1,,RING_POST_INJECTION
CRYRINGBEAM/KL_HARM_S,1,,RING_MANI_PRE_RAMP
CRYRINGBEAM/KL_HARM_S,1,,RING_RAMP
CRYRINGBEAM/KL_HARM_S,1,,RING_RF_MANIPULATION
CRYRINGBEAM/KL_HARM_S,1,,RING_RAMP
CRYRINGBEAM/KL_HARM_S,1,,RING_REBUNCHING
CRYRINGBEAM/KL_HARM_S,1,,RING_TARGET
CRYRINGBEAM/KL_HARM_S,1,,RING_INTERMEDIATE
CRYRINGBEAM/KL_OFFSET_S,0.0,,RING_INJECTION
CRYRINGBEAM/KL_OFFSET_S,0.0,,RING_BUNCHING
CRYRINGBEAM/KL_OFFSET_S,0.0,,RING_POST_INJECTION
CRYRINGBEAM/KL_OFFSET_S,0.0,,RING_MANI_PRE_RAMP
CRYRINGBEAM/KL_OFFSET_S,0.0,,RING_RAMP
CRYRINGBEAM/KL_OFFSET_S,0.0,,RING_RF_MANIPULATION
CRYRINGBEAM/KL_OFFSET_S,0.0,,RING_RAMP
CRYRINGBEAM/KL_OFFSET_S,0.0,,RING_REBUNCHING
CRYRINGBEAM/KL_OFFSET_S,0.0,,RING_TARGET
CRYRINGBEAM/KL_OFFSET_S,0.0,,RING_INTERMEDIATE
CRYRINGBEAM/KL_PHASE_S,0.0,deg,RING_INJECTION
CRYRINGBEAM/KL_PHASE_S,0.0,deg,RING_BUNCHING
CRYRINGBEAM/KL_PHASE_S,0.0,deg,RING_POST_INJECTION
CRYRINGBEAM/KL_PHASE_S,0.0,deg,RING_MANI_PRE_RAMP
CRYRINGBEAM/KL_PHASE_S,0.0,deg,RING_RAMP
CRYRINGBEAM/KL_PHASE_S,0.0,deg,RING_RF_MANIPULATION
CRYRINGBEAM/KL_PHASE_S,0.0,deg,RING_RAMP
CRYRINGBEAM/KL_PHASE_S,0.0,deg,RING_REBUNCHING
CRYRINGBEAM/KL_PHASE_S,0.0,deg,RING_TARGET
CRYRINGBEAM/KL_PHASE_S,0.0,deg,RING_INTERMEDIATE
CRYRINGBEAM/NPARTICLES_S,1000.0,,RING_INJECTION
CRYRINGBEAM/PARTICLE_SYMBOL_INPUT_S,2H,,RING_INJECTION
CRYRINGBEAM/QH_END_S,2.35,,RING_INJECTION
CRYRINGBEAM/QH_END_S,---,,RING_POST_INJECTION
CRYRINGBEAM/QH_END_S,2.33,,RING_RAMP
CRYRINGBEAM/QH_END_S,2.33,,RING_RAMP
CRYRINGBEAM/QH_END_S,---,,STORAGE_MANIP_WAIT
CRYRINGBEAM/QV_END_S,2.57,,RING_INJECTION
CRYRINGBEAM/QV_END_S,---,,RING_POST_INJECTION
CRYRINGBEAM/QV_END_S,2.53,,RING_RAMP
CRYRINGBEAM/QV_END_S,2.53,,RING_RAMP
CRYRINGBEAM/QV_END_S,---,,STORAGE_MANIP_WAIT
CRYRINGBEAM/Q_INPUT_S,1,,RING_INJECTION
CRYRINGBEAM/TREV,7.12909E-6,s,RING_INJECTION
CRYRINGBEAM/USE_SIMPLE_BF_B,false,,RING_INJECTION
CRYRINGBUMPER/TFALL_S,1.76E-4,s,RING_INJECTION
CRYRINGIKICKER/KICKER_TOFFSET1_S,0.0,s,RING_INJECTION
CRYRINGOPTICS/OPTIC_NAME_RING_S,CRYRING_STANDARD_OPTICS_TABLE,,RING_INJECTION
CRYRINGOPTICS/TAU_END_S,0.0,,RING_INJECTION
CRYRINGOPTICS/TAU_END_S,---,,RING_POST_INJECTION
CRYRINGOPTICS/TAU_END_S,0.0,,RING_RAMP
CRYRINGOPTICS/TAU_END_S,0.0,,RING_RAMP
CRYRINGORBIT/COH02,0.0,m,RING_INJECTION
CRYRINGORBIT/COH02,0.0,m,RING_RF_MANIPULATION
CRYRINGORBIT/COH02,0.0,m,STORAGE_MANIP_WAIT
CRYRINGORBIT/COH02,0.0,m,RING_TARGET
CRYRINGORBIT/COH03,0.0,m,RING_INJECTION
CRYRINGORBIT/COH03,0.0,m,RING_RF_MANIPULATION
CRYRINGORBIT/COH03,0.0,m,STORAGE_MANIP_WAIT
CRYRINGORBIT/COH03,0.0,m,RING_TARGET
CRYRINGORBIT/COH04,0.0,m,RING_INJECTION
CRYRINGORBIT/COH04,0.0,m,RING_RF_MANIPULATION
CRYRINGORBIT/COH04,0.0,m,STORAGE_MANIP_WAIT
CRYRINGORBIT/COH04,0.0,m,RING_TARGET
CRYRINGORBIT/COH06,0.0,m,RING_INJECTION
CRYRINGORBIT/COH06,0.0,m,RING_RF_MANIPULATION
CRYRINGORBIT/COH06,0.0,m,STORAGE_MANIP_WAIT
CRYRINGORBIT/COH06,0.0,m,RING_TARGET
CRYRINGORBIT/COH07,0.0,m,RING_INJECTION
CRYRINGORBIT/COH07,0.0,m,RING_RF_MANIPULATION
CRYRINGORBIT/COH07,0.0,m,STORAGE_MANIP_WAIT
CRYRINGORBIT/COH07,0.0,m,RING_TARGET
CRYRINGORBIT/COH08,0.0,m,RING_INJECTION
CRYRINGORBIT/COH08,0.0,m,RING_RF_MANIPULATION
CRYRINGORBIT/COH08,0.0,m,STORAGE_MANIP_WAIT
CRYRINGORBIT/COH08,0.0,m,RING_TARGET
CRYRINGORBIT/COH10,0.0,m,RING_INJECTION
CRYRINGORBIT/COH10,0.0,m,RING_RF_MANIPULATION
CRYRINGORBIT/COH10,0.0,m,STORAGE_MANIP_WAIT
CRYRINGORBIT/COH10,0.0,m,RING_TARGET
CRYRINGORBIT/COH11,0.0,m,RING_INJECTION
CRYRINGORBIT/COH11,0.0,m,RING_RF_MANIPULATION
CRYRINGORBIT/COH11,0.0,m,STORAGE_MANIP_WAIT
CRYRINGORBIT/COH11,0.0,m,RING_TARGET
CRYRINGORBIT/COH12,0.0,m,RING_INJECTION
CRYRINGORBIT/COH12,0.0,m,RING_RF_MANIPULATION
CRYRINGORBIT/COH12,0.0,m,STORAGE_MANIP_WAIT
CRYRINGORBIT/COH12,0.0,m,RING_TARGET
CRYRINGORBIT/COV02,0.0,m,RING_INJECTION
CRYRINGORBIT/COV02,0.0,m,RING_RF_MANIPULATION
CRYRINGORBIT/COV02,0.0,m,STORAGE_MANIP_WAIT
CRYRINGORBIT/COV02,0.0,m,RING_TARGET
CRYRINGORBIT/COV03,0.0,m,RING_INJECTION
CRYRINGORBIT/COV03,0.0,m,RING_RF_MANIPULATION
CRYRINGORBIT/COV03,0.0,m,STORAGE_MANIP_WAIT
CRYRINGORBIT/COV03,0.0,m,RING_TARGET
CRYRINGORBIT/COV04,0.0,m,RING_INJECTION
CRYRINGORBIT/COV04,0.0,m,RING_RF_MANIPULATION
... 679 more lines ...
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742
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Thu Jun 12 15:33:17 2025 |
CB, JM, EM, JG, TD, AB, CF, AR | Run 74 | 16:34
Like Run 73, but particle detector in YR10 now active, and recorded in MBS.
Clear effect of target on beam lifetime. Target off -> nearly no counts.
Attachment 22 - IPM (no target)
Attachment 23 - IPM (target)
Attachment 24 - YR10 particle detector (gap in events corresponds to target off period)
16.42 DSSSD bias & leakage current - attachments 1-2
DSSSD #4 currently conditioning at -20V
FEE64 temperatures OK - attachment 3
ADC, DISC, PAUSE & RESUME data item stats - attachments 4-7
System wide checks OK *except* WR deocder status aida04 - attachment 8
WR timestamps OK - attachment 9
per FEE64 Rate spectra - attachments 10-12
per FEE64 1.8.L spectra - attachments 13-14
per FEE64 1.8.W spectra - 20us FSR - attachments 15-16
pulser peak width aida06 69 ch FWHM, aida08 67 ch FWHM
Merger, TapeServer OK - attachments 17-18
ASIC settings 2025Apr08-13.45.30
aida01-aida04 slow comparator 0xc
aida05-aida12 slow comparator 0x8
aida13-aida16 slow comparator 0x64, LEC/MEC 0x1
17.23 CRYRING vacuum and temperature - attachments 19-21
17.34 routine checks OK
target density c. 5e+12, beam 3e+6
18.40 changed target x,y position to check correlation between target density and detector counts. New position: x:-1500, y:2400.
checks OK.
target density c. 3.7e+12, beam 3.1e+6
20.00 online analysis - per DSSSD energy spectra - attachment 25
t, h and p energy peaks clearly observed DSSSD #1 and #2 - p energy peak less clear in DSSSD #3
20.30 checks ok
target density increased to c. 5e+12 for some minutes then back at c. 3.7e+12, beam 3.1e+6.
21.47 checks ok
target density increased to c. 5.7e+12 around 21.35, then back at c. 3.7e+12. beam 3.1e+6.
22.30 online analysis - per DSSSD energy spectra - attachment 26
22.35 Analysis of data file G22-205/R74_29 - attachment 27
no timewarps, all deadtimes << 1%
22.45 DSSSD#4 bias -20V -> -40V, leakage current -2.7uA -> -4.09uA
23.14 DSSS\D#4 leakage current c. -9uA, return to bias -20V
23.21 target density slightly unstable in the last hour, changed nozzle position to x=-2000, y=2500.
00:04
Temps OK
System wide checks OK
Rates OK
Merger OK (1400 kb/s)
Target oscillating, but looks usable. Need to have another look at temperatures tomorrow morning.
01:57
Temps OK
Rates OK
Merger OK
Target getting thicker.
05:00
Temps OK
Rates OK
Merger OK
Target fluctuating
7:20 All sysytem checks ok. Target lost density @ 6;55 from 4.6e12 to 2.6e12 - will try moving. Update 7:30 after moving density back up to 4.4e12.
8:45 All Checks ok but target is fluctuating - really wants to be around 2e12. Had it up to 5e12 about 25 mins ago. Naughty target tbh.
9:25 All checks ok, gone to no storage as now tuning next beam energy.
10:30 All system checks OK, still tuning.
11:38 All system checks ok, still tuning. Frank entered cave to adjust magnetic field as the beam was not cooling at 90 keV/A
12:36 All checks okay, cave still open
13:40 All checks okay, tuning beam currently
14:50 All Checks OK. Target beam overlap currently happening - scanning range not showing anything. Target back on but not hitting - thickness 1.2e12.
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| Attachment 1: Screenshot_from_2025-06-12_16-42-39.png
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| Attachment 2: Screenshot_from_2025-06-12_16-42-48.png
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| Attachment 3: Screenshot_from_2025-06-12_16-43-19.png
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| Attachment 4: Screenshot_from_2025-06-12_16-43-30.png
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| Attachment 5: Screenshot_from_2025-06-12_16-43-42.png
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| Attachment 6: Screenshot_from_2025-06-12_16-43-56.png
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| Attachment 7: Screenshot_from_2025-06-12_16-44-11.png
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| Attachment 8: Screenshot_from_2025-06-12_16-44-40.png
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| Attachment 9: Screenshot_from_2025-06-12_16-45-21.png
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| Attachment 10: Screenshot_from_2025-06-12_16-46-17.png
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| Attachment 11: Screenshot_from_2025-06-12_16-46-24.png
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| Attachment 12: Screenshot_from_2025-06-12_16-46-35.png
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| Attachment 13: Screenshot_from_2025-06-12_16-47-43.png
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| Attachment 14: Screenshot_from_2025-06-12_16-49-50.png
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| Attachment 15: Screenshot_from_2025-06-12_16-54-34.png
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| Attachment 16: Screenshot_from_2025-06-12_16-55-13.png
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| Attachment 17: Screenshot_from_2025-06-12_16-55-33.png
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| Attachment 18: Screenshot_from_2025-06-12_16-55-41.png
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| Attachment 19: 1.png
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| Attachment 20: 3.png
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| Attachment 21: 2.png
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| Attachment 22: 20250612_163243.jpg
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| Attachment 23: 20250612_161105.jpg
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| Attachment 24: 20250612_163237.jpg
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| Attachment 25: Screenshot_from_2025-06-12_20-00-18.png
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| Attachment 26: Screenshot_from_2025-06-12_22-29-57.png
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| Attachment 27: R74_29
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*** TDR format 3.3.0 analyser - TD - May 2021
*** ERROR: READ I/O error: 5002
blocks: 32000
ADC data format: 261845231 ( 182631.5 Hz)
Other data format: 74772 ( 52.2 Hz)
Sample trace data format: 0 ( 0.0 Hz)
Undefined format: 0 ( 0.0 Hz)
Other data format type: PAUSE: 45 ( 0.0 Hz)
RESUME: 45 ( 0.0 Hz)
SYNC100: 37341 ( 26.0 Hz)
WR48-63: 37341 ( 26.0 Hz)
FEE64 disc: 0 ( 0.0 Hz)
MBS info: 0 ( 0.0 Hz)
Other info: 0 ( 0.0 Hz)
ADC data range bit set: 106 ( 0.1 Hz)
Timewarps: ADC: 0 ( 0.0 Hz)
PAUSE: 0 ( 0.0 Hz)
RESUME: 0 ( 0.0 Hz)
SYNC100: 0 ( 0.0 Hz)
WR48-63: 0 ( 0.0 Hz)
FEE64 disc: 0 ( 0.0 Hz)
MBS info: 0 ( 0.0 Hz)
Undefined: 0 ( 0.0 Hz)
Sample trace: 0 ( 0.0 Hz)
*** Timestamp elapsed time: 1433.736 s
FEE elapsed dead time(s) elapsed idle time(s)
0 0.185 0.000
1 0.000 628.972
2 0.000 554.120
3 0.050 2.762
4 0.005 6.506
5 0.000 1033.389
6 0.000 131.775
7 0.000 759.159
8 2.740 0.000
9 0.004 21.901
10 0.000 1310.256
11 0.005 9.027
12 0.000 0.000
13 0.000 0.000
14 0.000 0.000
15 0.000 0.000
16 0.000 0.000
17 0.000 0.000
18 0.000 0.000
19 0.000 0.000
20 0.000 0.000
21 0.000 0.000
22 0.000 0.000
23 0.000 0.000
24 0.000 0.000
25 0.000 0.000
26 0.000 0.000
27 0.000 0.000
28 0.000 0.000
29 0.000 0.000
30 0.000 0.000
31 0.000 0.000
32 0.000 0.000
*** Statistics
FEE ADC Data Other Data Sample Undefined Pause Resume SYNC100 WR48-63 Disc MBS Other HEC Data
0 40194292 11718 0 0 11 11 5848 5848 0 0 0 76
1 7144658 1920 0 0 0 0 960 960 0 0 0 30
2 7356264 2130 0 0 0 0 1065 1065 0 0 0 0
3 30372380 8614 0 0 5 5 4302 4302 0 0 0 0
4 25621460 7438 0 0 3 3 3716 3716 0 0 0 0
5 4380276 1110 0 0 0 0 555 555 0 0 0 0
6 13281715 3970 0 0 0 0 1985 1985 0 0 0 0
7 6038211 1666 0 0 0 0 833 833 0 0 0 0
8 76901033 21984 0 0 20 20 10972 10972 0 0 0 0
9 21957648 6166 0 0 1 1 3082 3082 0 0 0 0
10 1365330 376 0 0 0 0 188 188 0 0 0 0
11 27231964 7680 0 0 5 5 3835 3835 0 0 0 0
12 0 0 0 0 0 0 0 0 0 0 0 0
13 0 0 0 0 0 0 0 0 0 0 0 0
14 0 0 0 0 0 0 0 0 0 0 0 0
15 0 0 0 0 0 0 0 0 0 0 0 0
16 0 0 0 0 0 0 0 0 0 0 0 0
17 0 0 0 0 0 0 0 0 0 0 0 0
18 0 0 0 0 0 0 0 0 0 0 0 0
19 0 0 0 0 0 0 0 0 0 0 0 0
20 0 0 0 0 0 0 0 0 0 0 0 0
21 0 0 0 0 0 0 0 0 0 0 0 0
22 0 0 0 0 0 0 0 0 0 0 0 0
23 0 0 0 0 0 0 0 0 0 0 0 0
24 0 0 0 0 0 0 0 0 0 0 0 0
25 0 0 0 0 0 0 0 0 0 0 0 0
26 0 0 0 0 0 0 0 0 0 0 0 0
27 0 0 0 0 0 0 0 0 0 0 0 0
28 0 0 0 0 0 0 0 0 0 0 0 0
29 0 0 0 0 0 0 0 0 0 0 0 0
30 0 0 0 0 0 0 0 0 0 0 0 0
31 0 0 0 0 0 0 0 0 0 0 0 0
32 0 0 0 0 0 0 0 0 0 0 0 0
*** Timewarps
FEE ADC Pause Resume SYNC100 WR48-63 Disc MBS Undefined Samples
0 0 0 0 0 0 0 0 0 0
1 0 0 0 0 0 0 0 0 0
2 0 0 0 0 0 0 0 0 0
3 0 0 0 0 0 0 0 0 0
4 0 0 0 0 0 0 0 0 0
5 0 0 0 0 0 0 0 0 0
6 0 0 0 0 0 0 0 0 0
7 0 0 0 0 0 0 0 0 0
8 0 0 0 0 0 0 0 0 0
9 0 0 0 0 0 0 0 0 0
10 0 0 0 0 0 0 0 0 0
11 0 0 0 0 0 0 0 0 0
12 0 0 0 0 0 0 0 0 0
13 0 0 0 0 0 0 0 0 0
14 0 0 0 0 0 0 0 0 0
15 0 0 0 0 0 0 0 0 0
16 0 0 0 0 0 0 0 0 0
17 0 0 0 0 0 0 0 0 0
18 0 0 0 0 0 0 0 0 0
19 0 0 0 0 0 0 0 0 0
20 0 0 0 0 0 0 0 0 0
21 0 0 0 0 0 0 0 0 0
22 0 0 0 0 0 0 0 0 0
23 0 0 0 0 0 0 0 0 0
24 0 0 0 0 0 0 0 0 0
25 0 0 0 0 0 0 0 0 0
26 0 0 0 0 0 0 0 0 0
27 0 0 0 0 0 0 0 0 0
28 0 0 0 0 0 0 0 0 0
29 0 0 0 0 0 0 0 0 0
30 0 0 0 0 0 0 0 0 0
31 0 0 0 0 0 0 0 0 0
32 0 0 0 0 0 0 0 0 0
*** Program elapsed time: 24.852s ( 1287.645 blocks/s, 80.478 Mb/s)
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|
741
|
Thu Jun 12 14:22:27 2025 |
JM, CB, TD, CF, JG, EM | Run 73 | 15:00
Cave closed, waiting for beam to come back.
Reset all ASIC settings to those in elog 737
DSSD4 remains OFF and is set to the MEC channel.
ADC data items and data writing to disk - Attachments 1+2
While the cave has been closed we warmed the target up to 80K and have now cooled back to 30.5K to increase the density which was dropping into the 10^11 range. We have now recovered densities in the mid 10^12 at/cm2 range.
Detector leakage current plot - Attachment 3,4
All system checks OK
Started at 16:20
EM and JG trying to get scintillator signals in MBS
Configuration completed?
Stopped 16:32 |
| Attachment 1: Screenshot_from_2025-06-12_15-23-37.png
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| Attachment 2: Screenshot_from_2025-06-12_15-23-51.png
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| Attachment 3: Screenshot_from_2025-06-12_15-29-14.png
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| Attachment 4: Screenshot_from_2025-06-12_15-31-19.png
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740
|
Thu Jun 12 14:08:42 2025 |
JM, CB | Run 72 - pulser walkthrough | Pulser walkthrough conducted while the cave was open.
Pulser amplitudes 90000, 80000, 70000, 60000, 50000, 40000, 30000, 20000, 10000
DSSD4 was set to MEC and bias off as the detector had previously tripped.
All thresholds set to 0x64 for the pulser walkthrough |
| Attachment 1: Screenshot_from_2025-06-12_15-33-03.png
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739
|
Thu Jun 12 06:20:50 2025 |
JM | Run 68,69 - background | 07:20
Started a background run while the cave is open.
All ASIC settings remain unchanged, we just have no beam.
We see obvious difference in the rate plots for DSSD2 from the monitoring code. Attachment 1 - beam on, Attachment 2- beam off.
Data rate ~1.6 MB.sec
Checks OK.
10:30
Lost DSSD4 again. Writing a lot of junk to disk.
Switched to MEC channels. Still writing lots of data. Stopped the run.
Required ASIC check load on aida13,14,15,16 in order to bring rates back down.
Slowly re-biasing detector. At 35V
Moved detectors fully out for safety. Left potentiometer = 18.86 mm and right potentiometer = 19.8 mm. No effect on leakage currents.
Past 40V we large increases in leakage current. Only went up to 10uA and didn't trip. Set to 40V, current back down to normal levels.
Note we have turned the target compressor off to heat up before cooling later to try and get higher densities. This follows a drop in E1 yesterday reducing the target density.
10:45
Started new background run - Run 69.
DSSD4 set to MEC.
Thresholds still as in previous runs (120, 80, 80 keV). |
| Attachment 1: Screenshot_from_2025-06-12_07-01-00.png
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| Attachment 2: Screenshot_from_2025-06-12_07-20-26.png
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738
|
Wed Jun 11 10:13:42 2025 |
EW, CB, PJW, AR, JM | Run 67 | As run 66, optimisation of beam completed
DSSD4 now working and thresholds to 0x30 (480keV), switched to LEC
Tape service at 1.7MB/s
Did NOT reset the root histograms!!
11:30 All checks OK
13:48 All checks OK
15:15, fULL CHECK, STATUS - Okay. Target density ~2E12
16:15 All Checks OK. Target 2.9e12
17:30, Full check! status - okay. target 2.3e12
18:30 All Checks Ok
19:30 All Checks OK
21:30: All System Checks OK but targte density started dropping around 8:20. Tried to move the nozel but any x direction made it drop alot and y did nothing. Values hovering steadily between 1.1e12 to 1.4e12. Will try and move nozel again in 1 hour.
22:40: Full check, Status -okay! thickness 1.4E12. For more details look at the attchments
00:55: Full check. All looks okay!
03:55: Full check. All looks good!
06:28 Checks OK. Target density has dropped and is ~9e11 at/cm2. It will require some attention this afternoon
07:00 Run stopped. Final histogram attached. Number of counts somewhat obscured by background level. |
| Attachment 1: Screenshot_from_2025-06-11_11-15-33.png
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| Attachment 2: Screenshot_from_2025-06-11_11-15-16.png
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| Attachment 10: Screenshot_from_2025-06-11_22-38-49.png
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| Attachment 11: Screenshot_from_2025-06-11_22-39-08.png
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| Attachment 13: Screenshot_from_2025-06-11_22-40-55.png
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| Attachment 14: Screenshot_from_2025-06-12_07-01-35.png
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737
|
Wed Jun 11 09:16:55 2025 |
CB | ASIC Control Settings | 11 June 10:18
2025Apr08-13.45.30 settings
DSSD4 not working as of the screenshots (MEC + High Threshold)
See attached.
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| Attachment 1: Screenshot_from_2025-06-11_10-14-06.png
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| Attachment 2: Screenshot_from_2025-06-11_10-14-12.png
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| Attachment 3: Screenshot_from_2025-06-11_10-14-17.png
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| Attachment 4: Screenshot_from_2025-06-11_10-14-22.png
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| Attachment 5: Screenshot_from_2025-06-11_10-14-26.png
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| Attachment 9: Screenshot_from_2025-06-11_10-14-50.png
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| Attachment 10: Screenshot_from_2025-06-11_10-14-56.png
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| Attachment 11: Screenshot_from_2025-06-11_10-15-02.png
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| Attachment 13: Screenshot_from_2025-06-11_10-15-20.png
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| Attachment 15: Screenshot_from_2025-06-11_10-15-31.png
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| Attachment 16: Screenshot_from_2025-06-11_10-15-36.png
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| Attachment 17: Screenshot_from_2025-06-11_10-15-41.png
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736
|
Wed Jun 11 08:37:48 2025 |
CB, PJW | Run 66 | 09:38
As Run 65, no changes, CRYRING operators attempting to improve beam intensity.
We should be able to keep running while they do, but there is a chance of some missed injections or other oddities.
Checks OK
Root histograms NOT zeroed.
10:20
Checks OK |
| Attachment 1: Screenshot_from_2025-06-11_10-21-30.png
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| Attachment 2: Screenshot_from_2025-06-11_10-21-44.png
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735
|
Tue Jun 10 22:38:59 2025 |
JM, CB, PJW | Run 65 | 23:40
Offline anlaysis shows two clear peaks for DSSD1 and 2 at very low energies close to the threshold. One must be elastics and the other a noise peak.
For DSSD3 the noise level is so exceptionally high due to the low threshold that nothing can be discerned from background.
Therefore I decided to stop the previous run and increase the slow comparator threshold for DSSD3 from 50 keV to 80 keV (same as DSSD2).
Run 65 started.
150 keV/u beam on target, Target overlap confirmed with lifetime measurement using bunched beam.
Detectors in with servos only. Both arms are IN and stationary.
Left potentiometer = 36.54 mm
Right potentiometer = 37.96 mm
Data rate has dropped to 1.5 MB/sec and merger is between 600k and 900k.
Stats attached at new thresholds.
Stats zero'd to see number of pause and resume overnight.
02:30
Some reaction counts visible on monitoring histograms (rate v low)
Checks OK, same fee (aida16 fails clock and adc as before)
pause info items after a few hours attached
05:00
We see the peaks much more clearly now. Rate is low but they are there. Target density looks like it has been fluctuating in the low 10^12 region.
Note for this energy with 1e8 pps, 1e12 target density I estimate ~2 counts/h per detector for the 3He peak.from our spreadsheet calculator. After 6 hours of this run I saw about 10-15 counts in the peak of DSSD2, perhaps the same in DSSD3. DSSD1 has missing strips so is harder to see. This rate is about 48 hours for 5% (if we had 4 dssds).
Checks OK
Leakage current of dssd4 has been stable at 40V for a while now. Pushed voltage up to 75V with leakage current stable. At 80V it started to go over current
Turned bias to 60V and have left on at this level. It looks stable. Perhaps in the morning it can be pushed to close to 100V.
07:15
Temps OK
System wide checks: 16 fails ADC calibration, 14 fails WR decoder
Rates OK, some Pause/resume statementes overnight. See attached x2
Merger OK. 1.5 Mb/s
Peaks clearly visible in two detectors.
08:25 All checks OK. DSSD 4 to 75V - OK.
09:10 All checks OK. DSSD 4 to 80V. Trying to improve target (2-4E12). |
| Attachment 1: Screenshot_from_2025-06-10_23-46-27.png
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| Attachment 2: offline.png
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| Attachment 3: Screenshot_from_2025-06-11_02-29-55.png
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734
|
Tue Jun 10 16:46:39 2025 |
JM, CB, EW, AY, PC | 150 keV - Run64 | Run 64 started.
150 keV/u beam on target, Target overlap confirmed with lifetime measurement using bunched beam.
We do not see Rutherford on the detector - perhaps this is a calibration issue - perhaps too much noise at threshold.
We leave for a few hours to see if we obsrerve any reactions peaks
Moved detectors in with servos only. Both arms are IN and stationary.
Left potentiometer = 36.54 mm
Right potentiometer = 37.96 mm
Horizontal beam position = -3.0 mm
data rate is ~5 MB/sec
Electron cooler read values; Cooler voltage = 88.57V, cooler current=1.28 mA.
19:05
Full check, Status - Okay! Target thickness ~ 2E12. For more details, check the attached screenshots
20:12
Full check, Status - Okay! Target thickness ~ 1.6E12, For more details, check the attached screenshots
21:22
Full check, Status - Okay! For more details, check the attached screenshots
22:30
Full check, Status - Okay! Target thickness ~ 1.8E12, For more details, check the attached screenshots
23:00
Checks OK. I have increased the equal energy cut back to 500 keV and increased bin size on Ey energy histogram to 50 keV to try and see the nuclear peaks better.
Screen shot attached of monitoring code before it was reset. Some small peaks visible. |
| Attachment 1: Screenshot_from_2025-06-10_18-58-46.png
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| Attachment 2: Screenshot_from_2025-06-10_18-59-09.png
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| Attachment 27: Screenshot_from_2025-06-10_21-56-07.png
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733
|
Tue Jun 10 13:29:23 2025 |
EW, CB, JM | Thresholds changed | Experimented with slow comparator thresholds as we go down to lower beam energies
Checked deadlayer loses with SRIM, expected ruthford energies are as follows:
150keV/u -> 230keV
100keV/u -> 120keV
80keV/u -> 76keV
New thresholds:
aida1-4 0xc (120keV)
aida5-8 0x8 (80keV)
aida9-12 0x5 (50keV)
aida13-16 0x64(1MeV) set to MEC channel
Statistics and data rate with beam on but no target
Deleted April 24,25 and G22-86 from GSI, backup in Edinburgh |
| Attachment 1: Screenshot_from_2025-06-10_14-35-07.png
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| Attachment 2: Screenshot_from_2025-06-10_14-34-59.png
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732
|
Tue Jun 10 09:57:50 2025 |
CB, JM, PJW, YuL, JG | Run 62 | 10:58
As Run 61, no target for background.
200 keV/A
Saved the ASIC settings for currently running. I made a mistake and overwrote the 2025APR08 settings.
Current settings have aida13-16 set to MEC channel and slow comparator set to 0x64.
All ither channels set to 0xc slow comparator.
Energy changed to 150 keV/A a few minutes before the end of this run. No storage. Waiting for the new beam. |
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731
|
Tue Jun 10 09:44:33 2025 |
JG | MBS not running for a week | The MBS daq was not writing data since June 2. 22:39 (run_0035.lmd)
This means, no detector and target timing is available for this period.
The reason is that the rfio server was running on atppc025, which crashed at that time.
We resumed running MBS now at 10.06. ca. 10:35. (run_0036.lmd). |
|
730
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Tue Jun 10 09:44:30 2025 |
JG | MBS not running for a week | | The MBS daq was not writing data since June 2. 22:39 (run_0035.lmd)
The reason is that the rfio server was running on atppc025 which crashed at that time.
We resumed running MBS now at 10.06. ca. 10:35. (run_0036.lmd). |
|
729
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Tue Jun 10 09:44:20 2025 |
JG | MBS not running for a week | | The MBS daq was not writing data since June 2. 22:39 (run_0035.lmd)
The reason is that the rfio server was running on atppc025 which crashed at that time.
We resumed running MBS now at 10.06. ca. 10:35. (run_0036.lmd). |
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728
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Sun Jun 8 11:55:00 2025 |
EM, PC, JM, CB, EW, AY, CB, PJW, YuL | Run 58,59,60, 61 | 12:52
Started Run 58 - Beam energy 200 keV/u.
Slow comparator threshold set to 0xc (130 keV) for all channels. Fast discriminators turned OFF for all channels by setting enable mask in discrinator control to 0xfffff. See attachments.
D+ beam deuterium target. D+ beam energy is now 0.2 MeV/u. (beam calc calculation is 0.2037 MeV/u).
All four detectors positioned fully out and stationary.
Ring cycle time is 5 seconds.
Cooler read value = 117.58 V, 0.00178 mA
Target around 8.9E12 atoms/cm2
All checks ok!
Beam on ionisation profile monitor is lost quite rapidly and looks to increase in size quite a lot due to target interactions. We may have to look at lowering target density
Attachment 25 shows IPM with no target and attachment 26 shows IPM with the target 8e12 at/cm2. Compare also to attachment 12 (IPM with target at 2.6e12).
14:20
Checks are ok!
15:25
Fees 13-16 switched to MEC and bias on DSSD4 switched off
All other checks ok
17:00
Target dropped to 1-2E12 atoms/cm2
All checks okay- 17:25
17:45
Moved nozzle from x=-1500 to x=-2000, density went from 1E12 to 3E12
Moved nozzle again at 18:00 from x=-2000 to x=-3000 in steps of 500, density at 4E12
18:45
Turned bias ON for dssd4 stable at V=10 but unstable at V=20 so bias turned back OFF
19:30
All checks ok!
IPM attached, target density 2.6 atoms/cm2 (attachment 12)
20:00
Tried moving the nozzle more as target density dropped to 2-3E12 again
Moved in 500 steps either side of x=-2500 but didn't improve, then moved in 100 steps from y=1600 to y=2300 and target density now 6E12 at x=-2500 and y=2300
Tried dssd4 again but only stable to V=20 so bias OFF
21:50- All checks good, target density stable at 8E12
22:50- All checks fine (see attachments), target density at 6E12
00:10
Checks OK. Have zero'd statistics to see pause and resume statements over an hour.
Rates looks OK. ~140 c/h 3He, and ~80 c/h for 3H and 1H each.
Target has been stable at 7e12 at/cm2 for the last hour.
02:10
Checks OK. See pause statements after 2 hours - attachment 27, very few overall.
03:07
Checks OK. Target (9-11)E12
04:06
Checks OK. Target (9-11)E12
07:00
Checks OK. Target 9.8E12
page AIDA/Check/Check.tml. failed
ptoblem fixed
09:00
Checks OK. Target 8.9E12
10:32
No target data displayed for 10 minutes, but jet density unchanged. Restored display from remote access by M.L.
11:22
Storage data stopped and Faraday cup inserted to check the leakage current of Detector #4. Not good, current increases above 10 uA already at 40 V.
11:29
HV Detector #4 swithced off, Faraday cup removed, data stored again.
11:35
Check OK. Target 8.6E12
13:06
Check OK. Target 7.5E12
15:00
Temperature check - aida03 returns "No response". No response for rates either. Merger looks fine for 3? Likely just happened.
Attempted to STOP the DAQ. All FEEs still going (refused to stop) and 3 in error. Decided to just turn all FEEs off.
Restored DAQ with no issues. 3 is working. Temperatures fine. Rates fine. Unclear what had happened.
Run59 is EMPTY. New run = run 60.
16:00, Full check, everything working after the restart
17:35 Full check, everything is working smoothly!
18:35: Full check, status -Okay. thickness 5.7E12,
19:35: full ckeck! Status - OKAY, target theckness ~5E12
20:50 : Full check! status - okay
22:00 : Full check, status -okay. Target thickness 6.4E12
22:55 : Full check, status -okay! ------ target thickness 5.8E12
01:00 : Full check, all okay!
04:00 : Full check, all okay!
07:00 : Full check, all okay!
10:00
Attempted to change cooling to improve the beam. Changed cooling by 0.5V. Significant improvement in the IPM, but Rutherford goes down. Target missed?
Changed orbit bumps. Increased Rutherford. IPM is back to how it was. Rates are possibly slightly higher? Will attempt more systematically in the afternoon, when we change beam energy again.
Attempted to delay target on by 1 second. No significant changes in beam lifetime or rates. Can try systematically again in the afternoon.
Restored settings to how they were. Started new run 61.
Temps OK
Rates OK
Merger OK
Online histos look OK (did not reset)
Checks
Clock status
FEE64 module aida16 global clocks failed, 6
Clock status test result: Passed 15, Failed 1
ADC calibration
FEE64 module aida16 failed
Calibration test result: Passed 15, Failed 1
White Rabbit decoder
Base Current Difference
aida14 fault 0xbf08 : 0xbf08 : 0
aida14 : WR status 0x10
White Rabbit error counter test result: Passed 15, Failed 1
Understand the status reports as follows:-
Status bit 3 : White Rabbit decoder detected an error in the received data
Status bit 2 : Firmware registered WR error, no reload of Timestamp
Status bit 0 : White Rabbit decoder reports uncertain of Timestamp information from WR
FPGA Timestamp error counter test result: Passed 16, Failed 0
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| Attachment 1: Screenshot_from_2025-06-08_12-40-25.png
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727
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Sun Jun 8 10:05:30 2025 |
EM, PC, JM | Run57 | 11:06
Run during beam change. We will go down to 200 keV/u
All the checks are ok.
No storage mode
Target off
We played with some of the slow comparator thresholds to judge the statistics and data rate.
Deemed threshold at 100 keV too low for the current beam energy due to excessive rates observed on all FEEs. If required for lower energies we can go to this level.
Data rate at 130 keV threshold is about 2 MB/sec compared to 8 MB/sec at 100 keV. Note beam energy is 400 keV so no significant benefit going to the lowest threshold. |
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726
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Sun Jun 8 09:07:22 2025 |
EM, PC, JM | Run56 | NOTE: RunR55 is missing
Run56: Background run with 250 keV/u. Target off using the usual procedure.
All checks ok!
We moved to nostorage mode and will change the run during the beam change |
| Attachment 1: Screenshot_from_2025-06-08_10-10-06.png
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| Attachment 2: Screenshot_from_2025-06-08_10-15-01.png
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725
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Sat Jun 7 10:23:26 2025 |
JM, CB | carme-gsi rebooted | 10:00
The computer screen controlling the DAQ on carme-gsi appeared to have crashed.
Unable to move throught the different windows etc.
Unable to connect via anydesk. ssh access still available. It appears the x-server had crashed, we noticed earlier in the beam certain functions such as screenshots were glitchy so this was probably expected eventually.
We were able to access the DAQ on another CRYRING machine machine via 192.168.207.143:8015 and 192.168.207.143:8015 in the browser. DAQ is still running. We will try to reboot the x server without disturbing the DAQ.
ssh into carme-gsi and used the command 'systemctl reboot gdml' to attempt to reboot only this server.
This did not have the desired effect, whole of carme-gsi rebooted. We should have turned off the FEEs and stopped the DAQ gracefully but did not.
Restarted carme-gsi and rebooted the FEEs and DAQ system.
All checks OK -> clocks, ADC calibration etc.
ASIC settings loaded are 2025APR08. Only changes made to this settings were reducing the slow comparator threshold from 0x32 (1 MeV) to 0x14 (200 keV). aida03 and aida04 were set to the MEC on these settings, they have now been reset to the LEC channel (0x0). All channels on the LEC. |
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724
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Sat Jun 7 10:06:27 2025 |
JM, EM, CB, DB, AY, PC, CB | Run 54 | 11:10
We have started a new run at the same energy as R53 (250 keV/u) due to an issue with the DAQ pc
Server and DAQ restarted
ASIC settings loaded 2025APR08. Only changes made are setting all FEEs to LEC (0x0) on channel 10, and setting the slow comparator thresholds to 0x14 (200 keV).
All beam settings are the same as the previous elog. Detectors remain stationary and in the fully out position.
All checks ok!
ADC data items statistics appear unchanged. See attachment.
Data rate ~ 800 kB/sec
12:40
All checks ok
The target is not super stable.
14:00
Checks ok! Target back to >3E12 1/cm2
15:00
Checks ok!
17:00
Full check, everything looks okay!, Areal density is in beetween 3-5E12. Rate in all the detectors look fine.
19:14
Full check, everything looks great. Average arial density around 5e12 atoms/cm2. For more details please look at the attached screenshots
20:20
Target density dropped to 8e10, We are waiting for 20 minutes before changing the nozzle positions!
20:41 : slowly increased to 2.2e11 but it is not increasing anymore
20:43 Changed the nozzle position X fromm -1000 to -1500
20:56, Target thickness recovered bsck to 5e12
21:25, Full check, everything runnig smoothly. There is nothing unexpected, for details, please have a look at the attached file
22:30 Full check, Stable target thickness of more than 5e12 atoms/cm2. everthig running fine:-) For more details, please look at the attached screenshots!
00:52
Temperatures OK
Rates OK
Leakage current stable
System wide checks OK
Merger OK
Beam is on
Target looks fine, 2E-10 mbar in YR09 Etarget
02:51
Temperatures OK
Rates OK
Leakage current stable
System wide checks OK
Merger OK
Beam is on
Target looks fine, 3E-10 mbar in YR09 Etarget
03:45
Temperatures OK
Rates OK
Leakage current stable
System wide checks OK
Merger OK
Beam is on
Target looks fine, 4E-10 mbar in YR09 Etarget
07:05
Temperatures OK
Rates OK
Leakage current stable
System wide checks OK
Merger OK
Beam is on
Target looks great!!! 1.1E13 this morning!!
08:05
All checks ok!
09:05
All checks ok! Target is perfect to make this Sunday amazing
10:00
All checks ok! We completed the data taking on this energy. Atatched the final stats.
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723
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Fri Jun 6 17:27:03 2025 |
AY, ST, JM, EM, DB | Run 53 | Run 53 started at 18:25 (started already earlier but since then data is taken). Everything is running again. We started at 3E12 at/cm2.
Side comment: Gleb told us 1h ago that he will switch to coasted mode and call us back as soon as he is done. So far he didn't call back and he is not in the office... So we decided to start data taking already. But: the software says that coasting mode is already on, but the graph looks like bunched mode... So we started data taking and will update this situation as soon as Gleb called us. -> Update: Okay, we were the entire time in coasting mode
D+ beam deuterium target. D+ beam energy is now 0.25 MeV/u. (beam calc calculation is 0.2570 MeV/u).
All four detectors positioned fully out and stationary.
Left potentiometer = -2.76mm (corresponds to x = -2500, which is the more trustworthy value)
Right potentiometer = 1.77 mm (corresponds to y = 2500, which is the more trustworthy value)
Ring cycle time is 5 seconds.
Cooler set value = 146.25 V, 2 mA. Read value = 146.2 V, 0.00179 mA
All leakage currents look good.
Beam position. Vertical =0.0mm , Horizontal=-2.0 mm
Data rate ~ 812kB/s
After starting the run we struggled because we did not know whether we can trust the beam overlap test after going from bunched mode to coasting mode. We therefore stopped data taking for approx. 1h to to this test once again in coasting mode, but did it via the Rutherford measurement. The result showed that the optimum is exactly the same: x=-2mm (see attachment 1).
However, we are strugglign with the areal density... It quickly dropped to 2E10 and slowly recovered in a more or less oscillating way (see attachment 2; the first four columns are the integrals of the four detectors, the next column is the sum of them. Afterwards its the average areal density and the last column is the total integral divided by the average areal density).
19:29: Storage turned back on
Left potentiometer now = -2.79mm (corresponds to x = -5000, which is the more trustworthy value)
19:53: Areal density dropped to 2E11, so we moved the left potentiometer once from x=-5000 to x=-4500. Sudden increase in pressure, but slow decrease again.
19:59: Left potentiometer once from x=-4500 to x=-4000. Seems to be the right direction... But we do it slowly...
20:19: Full check. Everything is okay, but areal density is still... aweful... Most of the time its between 1E11 and 1E12 at/cm2
20:20: Left potentiometer once from x=-4000 to x=-3500. Seems again to be the right direction... Sudden increase from 7E11 to 2E12
20:40: Everything stabilized at a higher average areal density. We are now fluctuating between 1E12 to 5E12.
20:55: Left potentiometer once from x=-3500 to x=-3000. Seems again to be the right direction... Sudden increase from 9E11 to 3E12
21:56: Full check. Everything is okay and areal density finally stabilized. Its now since 1h between 3E12 and 5E12.
22:47: Full check. Everything is meraviglioso!
23:20
Checks OK
Target density remains stable around 5e12 at/cm2. Count rate has improved to around 200 c/h for 3He, 150 c/h for 3H and 80 c/h for 1H.
02:20
All checks OK
Count rates look pretty good, target density has maintained mid-high e12 lavel over last 3 hours.
peaks in spectra very clear
05:00
Checks OK
Now have several thousand counts total. Target level in high e12 level.
07.06.2025
07:00
Full checks! Target level 1-6E12 [1/cm2]
10:00
The x server on the CARME-gsi computer appears to be struggling and is not able to be checked. Needs a reboot.
We still have ssh access and are able to access the DAQ on another CRYRING machine machine via 192.168.207.143:8015. DAQ is still running. We will try to reboot the x server without disturbing the DAQ.
oopsie whole carme-gsi rebooted not just the x server. Restarting DAQ |
| Attachment 1: 2025_06_06_19_41_30_Greenshot.png
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722
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Fri Jun 6 16:49:59 2025 |
CB, AY, ST | Beam overlap results for 200keV and 250keV | For 200keV the optimal horizontal position is -5mm.
For 250keV the optimal horizontal position is -2mm.
Both values are already given to the operators, so tomorrow we can just switch to 200keV and go on :)
Nonetheless, we now went to 250keV and start measuring. |
| Attachment 1: 2025_06_06_17_46_56_Greenshot.png
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721
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Thu Jun 5 16:54:18 2025 |
EW, ST, CB | Run 52 - 0.3 MeV/A | Run 52 started at 17:53. Everything is running again. We started at 3E12 at/cm2
D+ beam deuterium target. D+ beam energy is now 0.3 MeV/u. (beam calc calculation is 0.3067 MeV/u).
All four detectors positioned fully out and stationary and also detector #4 is running again.
Left potentiometer = -3.03mm (corresponds to x = 0, which is the more trustworthy value)
Right potentiometer = 1.82 mm (corresponds to y = -1000, which is the more trustworthy value)
Ring cycle time is 5 seconds.
Cooler set value = 177.9 V, 4 mA. Read value = 177.65 V, 3.53 mA
All leakage currents look good.
Beam position. Vertical =0.0mm , Horizontal=1.0 mm
Data rate ~ 947kB/s
18:09: System check - everything perfect!
Leakage current attachment 1
Rates attachment 2
19:50: System check - everything marvelous!
22:05: System check - everything excellent!
22:50: System check - everything fabulous!
current spectra attachment 3
02:05
Temperatures OK
System wide checks OK
Statistics OK
Merger OK
Leakage current OK
Ring vacuum OK
04:52
Temps OK
System wide checks OK
Stats OK - attached
Merger OK - attached
Leakage OK - attached
Histos look good - attached
07:10
Temps OK
System wide checks OK
Stats OK - attached
Merger OK - attached
Leakage OK - attached
Histos look good - attached
11:31
All checks OK
13:54
All checks OK
Rates attached
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| Attachment 1: Screenshot_from_2025-06-05_18-10-19.png
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720
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Thu Jun 5 08:50:00 2025 |
JM, CF, CB, EW | Run 51 - background | 09:49
DSSD4 has been biased to 100V in steps of 5V from 60V. It was previously stable overnight at 60V - attachment 1
Will keep an eye on it but looks OK at the moment. Current bias and leakage current - attachment 2
I have reset DSSD4 FEES (13,14,15,16) to the LEC and lowered the thresholds to be in line with other FEES.
Current slow comparator threshold for all FEES is 0x14 (200 keV).
Attachment 3 shows current ADC data items statistics.
Started a new run 51 with no beam and no target. Access to the cave is allowed.
Current data rate is 800 kB/sec.
All statistics and histograms in aida zero'd
12:57
Temps OK
Rates OK - attached
Merger OK
System wide checks
14:58
Temps - OK
Rates - OK
Merger - OK
15:00
Beam tuning to start soon. No storage. |
| Attachment 1: Screenshot_from_2025-06-05_09-38-05.png
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719
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Wed Jun 4 10:44:36 2025 |
EW, CB, JM, OF, JG, ST | Run 50 - 0.35 MeV/A | 11:30
Run 50 started.
D+ beam deuterium target. D+ beam energy is 0.35 MeV/u. (beam calc calculation is 0.3577 MeV/u)
Target density is about 4e12 at/cm2
All four detectors positioned fully out and stationary.
Left potentiometer = 18.86 mm
Right potentiometer = 19.8 mm
Ring cycle time is 10 seconds.
Target T1=30.1K, T2=31.8K.
Nozzle position unchanged since end of run 48
YR09-Etarget pressure = 2.05e-10 mbar.
Cooler Read value = 207.1 V, 4.39 mA
All leakage currents look good (except dssd4, currently stable at V=60)
Beam position. Vertical =0.0mm , Horizontal=0.5 mm
Data rate ~ 172kB/s
Slow comparator threshold to 0x14 (200 keV) since we decreased beam energy.
13:00
All checks OK
We were seeing some rubbish obscuring the 3He peak. JM remembered setting the EYEX cut very high (3 MeV) on the online plot, Now it is reduced to 500 keV
See attachments of histograms before restarting code.
16:32 all checks okay
18:19 all checks okay
20:20 all checks okay
21:45 all checks okay
01:00 all checks okay
04:00 all checks okay
7:00
Run stopped - cave to be opened. Beam looks on when run was stopped.
Temps OK - attach
Leakage current stable - attach
Rates OK - attach
Merger OK - attach
Final spectra attached
09:30
Gas target shutter valve closed to save ring vacuum.
All checks OK
Stats at htis threshold with no beam attached.
Biased DSSD4 in steps of 5V from 60V since it has been stable since yesterday,
Was able to bias to 100V with no issues. |
| Attachment 1: Screenshot_from_2025-06-04_12-07-43.png
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| Attachment 2: Screenshot_from_2025-06-04_12-07-19.png
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| Attachment 3: Screenshot_from_2025-06-04_12-57-24.png
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| Attachment 4: Screenshot_from_2025-06-04_12-57-37.png
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| Attachment 5: Screenshot_from_2025-06-05_07-07-37.png
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| Attachment 6: Screenshot_from_2025-06-05_07-07-30.png
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| Attachment 7: Screenshot_from_2025-06-05_07-02-19.png
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| Attachment 8: Screenshot_from_2025-06-05_07-03-40.png
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| Attachment 9: Screenshot_from_2025-06-05_09-34-41_1.png
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| Attachment 10: Screenshot_from_2025-06-05_09-38-05.png
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| Attachment 11: Screenshot_from_2025-06-05_09-46-08.png
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| Attachment 12: Screenshot_from_2025-06-05_13-02-08.png
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| Attachment 13: beamCalc-0.35.png
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718
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Wed Jun 4 00:10:39 2025 |
JM | Run 49 - beam only | 01:10
Gas target turned off via the shutter valve.
Run 49 started beam only background run.
Slow comparator threshold lowered to 0x14 (200 keV) in preparation for the energy change tomorrow morning.
Other than that no changes to the DAQ or to the experimental setup.
D+ beam remains at 0.5 MeV nominally. All four detectors positioned fully out and stationary,
I tried to re-bias detector #4 however was not able to bias past 70V. DSSD4 remains off and set to the MEC (0x1). (see attchement 1)
Ring cycle is every 10 seconds. Beam position unchanged, Beam position. Vertical =0.0mm , Horizontal=0.0 mm
Ring vacuum is now 3.16e-11 mbar. Before switching off the gas target density was 2e12 at/cm2
Data rate is 89 kB/sec
ADC data items stats remain largely unchanged at new threshold. (see attachment 2)
Aida01 has increased to several thousand. Tried check ASIC control on asic #4 of aida01->no effect on higher rates.
01:20
All checks OK.
After 20 minutes of running see energy histogram and xy histogram (attachments 3,4)
Interesting xy pattern (hydrogen? Injection noise?)
Note put aida13-aida16 slow comparator threshold back to 0x24 as we had some rates coming through (~1kHz) which is now back to zero. If we revive the detector in the morning, the thresholds should be lowered in line with other detectors.
03:00
All checks OK
04:30
All checks ok
7:20
All checks ok
Run stopped, final energy histogram and xy histogram attached. |
| Attachment 1: Screenshot_from_2025-06-04_01-18-10.png
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| Attachment 2: Screenshot_from_2025-06-04_01-18-59.png
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| Attachment 3: Screenshot_from_2025-06-04_01-20-47.png
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| Attachment 4: Screenshot_from_2025-06-04_01-20-56.png
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| Attachment 5: Screenshot_from_2025-06-04_07-22-01.png
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| Attachment 6: Screenshot_from_2025-06-04_07-21-56.png
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717
|
Tue Jun 3 14:54:29 2025 |
PMH, ST | Run 48 | Run 48 started. Everything is running again. We started at 3E13 at/cm2
D+ beam deuterium target. D+ beam energy is still 0.5 MeV/u. (beam calc calculation is 0.5143 MeV/u). See previous entry for beamcalc.
All four detectors positioned fully out and stationary, however we switched off detector #4.
Left potentiometer = -3.03mm (corresponds to x = 0, which is the more trustworthy value)
Right potentiometer = 1.74 mm (corresponds to y = -500, which is the more trustworthy value)
Ring cycle time is 10 seconds.
Cooler set value = 297.2 V, 8 mA. Read value = 296.7 V, 7 mA
All leakage currents look good (except dssd4, currently turned off)
Beam position. Vertical =0.0mm , Horizontal=0.0 mm
Data rate ~ 108kB/s
16:40 Change Gasjet target Y=-500 to Y=0
17:37 Change Gasjet target Y= 0 to Y= 500
20:30 We now take some time to optimize the areal density
20:30 Change Gasjet target Y= 500 to Y= 1000 (resulting in 2E12)
20:32 Change Gasjet target Y= 1000 to Y= 500 (resulting in 4E12)
20:33 Change Gasjet target Y= 500 to Y= 0 (resulting in 7E12)
20:35 Change Gasjet target Y= 0 to Y= -500 (resulting in 1.1E13)
20:37 Change Gasjet target Y= -500 to Y= -1000 (resulting in 1.8E13, still increasing and amazing for almost 1h)
21:48: Since approximately 20min its just going down systematically from a stable 2E13 to 6E12...) Lets try another round of optimization...
21:48 Change Gasjet target Y= -1000 to Y= -1500 (starting at 7E12 and resulting in 2E12)
21:49 Change Gasjet target Y= -1500 to Y= -1000 (starting at 2E12 and resulting in 6E12)
21:50 Change Gasjet target Y= -1000 to Y= -500 (starting at 6E12 and resulting in 9E12)
21:51 Change Gasjet target Y= -500 to Y= 0 (starting at 9E12 and resulting in 1.3E13 but dropping back to 7E12 within 3min)
21:54 Change Gasjet target. Leaving Y at 0, but moving X from 0 to -500 (starting at 6E12 and resulting in 3E12)
21:55 Change Gasjet target. Leaving Y at 0, but moving X from -500 to 0 (starting at 3E12 and resulting in 4E12)
21:56 Change Gasjet target. Leaving Y at 0, but moving X from 0 to +500 (starting at 4E12 and resulting in 6E12)
21:59 Change Gasjet target. Leaving X at 500, but moving Y from 0 to +500 (starting at 5E12 and resulting in 7E11...)
22:00 Change Gasjet target. Leaving X at 500, but moving Y from +500 to 0 (starting at 7E11 and resulting in 2E12)
Side comment: It seems no matter what we do, that there is a general decrease within the last 30min...
22:00 Change Gasjet target. Leaving X at 500, but moving Y from +500 to 0 (starting at 7E11 and resulting in 2E12)
Okay... No matter what we do... Its still decreasing...
22:03 Change Gasjet target. Leaving Y at 0, but moving X from 500 to 0 (starting at 1E12 and resulting in 2E12)
22:06 Change Gasjet target. Leaving X at 0, but moving Y = 0 from to -500 (starting at 2E12 and resulting in 5E12
22:09 Change Gasjet target. Leaving X at 0, but moving Y = -500 from to -1000 (starting at 5E12 and just randomly fluctuating within the next 15min... and more decreasing than increasing...)
22:25 Change Gasjet target. Leaving X at 0, but moving Y = -1000 from to -1500 (starting at 1E12 and resulting in 2E12... )
22:31 Change Gasjet target. Leaving X at 0, but moving Y = -1500 from to -2000 (starting at 1E12 and resulting in 8E11... ) Whaaaat????
22:32 Change Gasjet target. Leaving X at 0, but moving Y = -2000 from to -1000 (starting at 9E11 and resulting in 4E12... ) Okaaaay lets wait and see...
01:00
Run stopped.
Final statistics very high. Over 10,000 counts for 3He and 3H, Over 5000 counts for proton.
Final energy histogram and xy plot on final attachments |
| Attachment 1: Screenshot_from_2025-06-03_16-57-29.png
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| Attachment 2: Screenshot_from_2025-06-03_16-57-46.png
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| Attachment 3: Screenshot_from_2025-06-03_16-57-55.png
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| Attachment 4: Screenshot_from_2025-06-03_16-58-15.png
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| Attachment 5: Screenshot_from_2025-06-04_00-54-02.png
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| Attachment 6: Screenshot_from_2025-06-04_00-57-33.png
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716
|
Tue Jun 3 11:16:07 2025 |
EW, EM, JM | Run 47, beam only background | Run 47 started. Target cooling down after water cooler failure, beam only background
D+ beam deuterium target. D+ beam energy is 0.5 MeV/u. (beam calc calculation is 0.5143 MeV/u). See previous entry for beamcalc.
All four detectors positioned fully out and stationary.
Left potentiometer = 18.86 mm
Right potentiometer = 19.8 mm
Ring cycle time is 10 seconds.
Cooler set value = 297.2 V, 8 mA. Read value = 296.477 V, 6.97 mA
All leakage currents look good (except dssd4, currently stable at V=40)
Beam position. Vertical =0.0mm , Horizontal=0.0 mm
Data rate ~ 25kB/s
13:00
Run stopped to allow tuning of parameters for 0.35 MeV/u |
| Attachment 1: Screenshot_from_2025-06-03_12-20-25.png
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| Attachment 2: Screenshot_from_2025-06-03_12-19-36.png
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|
715
|
Mon Jun 2 20:03:43 2025 |
JG, AG, CB, EW, EM | Run 45/46, 0.5 MeV/A | Run 45 started.
D+ beam deuterium target. D+ beam energy is 0.5 MeV/u. (beam calc calculation is 0.5143 MeV/u). See attachment for beamCalc
Target density is about 2e12 at/cm2
All four detectors positioned fully out and stationary.
Left potentiometer = 18.86 mm
Right potentiometer = 19.8 mm
Ring cycle time is 10 seconds. (optimized with calculation https://web-docs.gsi.de/~stoe_exp/web_programs/optimizer/index.php)
Target T1=29.9K, T2=31.6K.
Nozzle position was not touched since run 40 (not clear how to double check)
YR09-Etarget pressure = 1.33e-10 mbar.
Cooler set value = 297.2 V, 8 mA. Read value = 296.477 V, 6.97 mA
All leakage currents look good
Beam position. Vertical =0.0mm , Horizontal=0.0 mm
Beam intensity ~6e8 on bunched beam, unknown on coasting.
Data rate ~ 422kB/s
Attachements:
- beam cycle time optimzer results (https://web-docs.gsi.de/~stoe_exp/web_programs/optimizer/index.php)
- full paramodi export
- leackage current plot
- beam target overlap measurement
22:55 - all checks okay
23:00-00:00 atppc025 crashed, taking down the proxy to the internet and anydesk. Recovered remotely moving proxy to atppc022. Let Michael know, then move back to atppc025 (contact CB or JM). 22 seems to work fine, no rush
Tried to move InteractiveMotion.x screen on carme-gsi since it was on atppc025, which froze. Cannot ssh to carmemotorspi from carme-gsi, except if already ssh in. Must be a proxy issue. Motors are stationary, will fix tomorrow morning.
00:00 Found DSSD 4 unbiased. Strong spike in leakage current just before midnight. Correlated with atppc025 freezing? Maybe a power fluctuation? No storage. Attempting to re-bias. Beam and target appear to be fine. Merger appears to be fine.
Moved right arm slightly with servo. No effect on bias.
V = 50 -> 14 uA oscillating
V = 40 -> 7 uA oscillating
V = 30 -> 4uA stable
V = 35 -> 6.5 uA unstable
Cannot bias above 35 V. Will leave DSSD4 condition overnight. LEC-> MEC on DSSD 4.
Run 45 final histograms save. Started new run with same conditions except DSSD 4.
04:00
Temps OK
Rates OK (no dssd 4)
Merger OK (38 kb/s)
Histo attached
Could increase bias in 4 to around 70 V before the current got unstable. Ramped down to 30 V again. Need to try significantly slower, 10 V an hour or so -> morning shift.
07:10
Since 4:35 no electron cooler
7:15 electron cooler back
Temps OK
Rates OK (except dssd4)
Merger OK (38kB/s)
Histo attached
8:35
V=40 -> 8uA oscillating
V=50 -> 8uA oscillating
V=40 -> 7uA oscillating
V=30 -> 3.9uA oscillating
Performed a V-I curve test of dssd 4
Turned bias OFF, went to 5V and then bias ON again
V=5 -> 1.245uA stable
V=10 -> 1.820uA stable
V=15 -> 2.300uA stable
V=20 -> 2.720uA stable
V=25 -> 3.105uA stable
V=30 -> 3.460uA stable
V=35 -> 3.795uA stable
V=40 -> 4.115uA stable
V=45 -> 4.425uA stable
V=50 -> unstable
Turned bias OFF again, then back on after few minutes
V=5 -> 1.240uA stable
V=10 -> 1.820uA stable
V=15 -> 2.295uA stable
V=20 -> 2.715uA stable
V=25 -> 3.100uA stable
V=30 -> 3.450uA stable
V=35 -> 3.790uA stable
V=40 -> 4.110uA stable
Leaving at 40 for a couple of hours
10:55
Tried 0x1 for medium/low energy selection for aida 13,14,15,16 but rate was roughly 250000 across all
11:30
Water coolers have gone down, moinitoring the FEE temperatures, stopped the run
11:48
Water cooling back
|
| Attachment 1: Screenshot_2025-06-02_20-58-17.png
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| Attachment 2: 2025-06-02_20-56-30_YRT1_CRYRING_2025_D_Bruno_500keV.C1.txt
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# Version: 1.3
# Comment: ParamModi Export at 2025-06-02T20:57:02.504235715+02:00[Europe/Berlin]
# Context: YRT1_CRYRING_2025_D_Bruno.C1
# Columns: PARAMETERNAME,VALUE,UNIT,BEAMPROCESSPURPOSE
LOGICAL.SOURCE_HV/U,20000.0,V,TRANSFER_INJECTION
YRT1_TO_YRT1LQ1_BEAM/BEAM_MODE_S,NO_BEAM,,TRANSFER_INJECTION
YRT1_TO_YRT1LQ1_BEAM/PARTICLE_SYMBOL_S,2H,,TRANSFER_INJECTION
YRT1_TO_YRT1LQ1_BEAM/Q_S,1,,TRANSFER_INJECTION
YRT1_TO_YRT1LQ1_TIMEPARAM/TIMING_BI_DELAY_S,2.0E-4,s,TRANSFER_INJECTION
YRT1_TO_YRT1LQ1_TIMEPARAM/TIMING_BI_WINDOW_S,0.002,s,TRANSFER_INJECTION
YRT1_TO_YRT1LQ1_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,BEAMOUT_INIT
YRT1_TO_YRT1LQ1_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,TRANSFER_INJECTION
YRT1_TO_YRT1LQ1_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,STATIC
YRT1_TO_YRT1LQ1_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,STATIC
YRT1_TO_YRT1LQ1_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,STATIC
YRT1_TO_YRT1LQ1_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,STATIC
YRT1_TO_YRT1LQ1_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,STATIC
YRT1_TO_YRT1LQ1_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,STATIC
YRT1_TO_YRT1LQ1_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,STATIC
YRT1_TO_YRT1LQ1_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,STATIC
YRT1_TO_YRT1LQ1_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,STATIC
YRT1_TO_YRT1LQ1_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,BEAMOUT_RESET
YRT1_TO_YRT1LQ1_TIMEPARAM/TIMING_SOURCE_PULSE_LENGTH_S,0.0024,s,TRANSFER_INJECTION
YRT1_TO_YRT1LQ1_TIMEPARAM/T_BP_LENGTH_S,0.12,s,BEAMOUT_INIT
YRT1_TO_YRT1LQ1_TIMEPARAM/T_BP_LENGTH_S,0.11,s,TRANSFER_INJECTION
YRT1_TO_YRT1LQ1_TIMEPARAM/T_BP_LENGTH_S,0.0,s,STATIC
YRT1_TO_YRT1LQ1_TIMEPARAM/T_BP_LENGTH_S,0.0,s,STATIC
YRT1_TO_YRT1LQ1_TIMEPARAM/T_BP_LENGTH_S,0.0,s,STATIC
YRT1_TO_YRT1LQ1_TIMEPARAM/T_BP_LENGTH_S,0.0,s,STATIC
YRT1_TO_YRT1LQ1_TIMEPARAM/T_BP_LENGTH_S,0.0,s,STATIC
YRT1_TO_YRT1LQ1_TIMEPARAM/T_BP_LENGTH_S,0.0,s,STATIC
YRT1_TO_YRT1LQ1_TIMEPARAM/T_BP_LENGTH_S,0.0,s,STATIC
YRT1_TO_YRT1LQ1_TIMEPARAM/T_BP_LENGTH_S,0.0,s,STORAGE_MANIP_PERFORM
YRT1_TO_YRT1LQ1_TIMEPARAM/T_BP_LENGTH_S,---,s,STORAGE_MANIP_WAIT
YRT1_TO_YRT1LQ1_TIMEPARAM/T_BP_LENGTH_S,---,s,STORAGE_MANIP_RESTART_FGS
YRT1_TO_YRT1LQ1_TIMEPARAM/T_BP_LENGTH_S,---,s,STATIC
YRT1_TO_YRT1LQ1_TIMEPARAM/T_BP_LENGTH_S,---,s,STATIC
YRT1_TO_YRT1LQ1_TIMEPARAM/T_BP_LENGTH_S,0.12,s,BEAMOUT_RESET
YRT1LQ1_TO_YRT1LC1_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,BEAMOUT_INIT
YRT1LQ1_TO_YRT1LC1_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,TRANSFER_INJECTION
YRT1LQ1_TO_YRT1LC1_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,STATIC
YRT1LQ1_TO_YRT1LC1_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,STATIC
YRT1LQ1_TO_YRT1LC1_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,STATIC
YRT1LQ1_TO_YRT1LC1_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,STATIC
YRT1LQ1_TO_YRT1LC1_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,STATIC
YRT1LQ1_TO_YRT1LC1_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,STATIC
YRT1LQ1_TO_YRT1LC1_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,STATIC
YRT1LQ1_TO_YRT1LC1_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,STATIC
YRT1LQ1_TO_YRT1LC1_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,STATIC
YRT1LQ1_TO_YRT1LC1_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,BEAMOUT_RESET
LOGICAL.YRT1KH1/HKICK,0.001,rad,TRANSFER_INJECTION
LOGICAL.YRT1KV1/VKICK,0.005,rad,TRANSFER_INJECTION
LOGICAL.YRT1LC1_V/ACTIVE_S,true,,TRANSFER_INJECTION
LOGICAL.YRT1LC1_V/THIGH_S,1.0E-4,s,TRANSFER_INJECTION
LOGICAL.YRT1LC1_V/TOFFSET_S,5.0E-4,s,TRANSFER_INJECTION
LOGICAL.YRT1LC1_V/U,2000.0,V,TRANSFER_INJECTION
LOGICAL.YRT1LD21/ASYMMETRY_KNOB_S,0.0,,TRANSFER_INJECTION
LOGICAL.YRT1LD21/HOR_STEER_KNOB_S,0.0,,TRANSFER_INJECTION
LOGICAL.YRT1LD21/U_QUAD,-350.0,V,TRANSFER_INJECTION
LOGICAL.YRT1LD21/VER_STEER_KNOB_S,0.05,,TRANSFER_INJECTION
LOGICAL.YRT1LD22/ASYMMETRY_KNOB_S,0.0,,TRANSFER_INJECTION
LOGICAL.YRT1LD22/U_QUAD,350.0,V,TRANSFER_INJECTION
LOGICAL.YRT1LT31/ASYMMETRY_KNOB_S,0.0,,TRANSFER_INJECTION
LOGICAL.YRT1LT31/U_QUAD,680.0,V,TRANSFER_INJECTION
LOGICAL.YRT1LT32/ASYMMETRY_KNOB_S,0.0,,TRANSFER_INJECTION
LOGICAL.YRT1LT32/U_QUAD,-680.0,V,TRANSFER_INJECTION
LOGICAL.YRT1LT33/ASYMMETRY_KNOB_S,0.0,,TRANSFER_INJECTION
LOGICAL.YRT1LT33/U_QUAD,680.0,V,TRANSFER_INJECTION
LOGICAL.YRT1LT41/ASYMMETRY_KNOB_S,0.0,,TRANSFER_INJECTION
LOGICAL.YRT1LT41/U_QUAD,-1520.0,V,TRANSFER_INJECTION
LOGICAL.YRT1LT42/ASYMMETRY_KNOB_S,0.0,,TRANSFER_INJECTION
LOGICAL.YRT1LT42/U_QUAD,2080.0,V,TRANSFER_INJECTION
LOGICAL.YRT1LT43/ASYMMETRY_KNOB_S,0.0,,TRANSFER_INJECTION
LOGICAL.YRT1LT43/U_QUAD,-1550.0,V,TRANSFER_INJECTION
LOGICAL.YRT1MH1/HKICK,0.006,rad,TRANSFER_INJECTION
LOGICAL.YRT1MH1/K0L_THEO,-1.57079,rad,TRANSFER_INJECTION
YRT1LC1_TO_YRT1MH2_TIMEPARAM/TIMING_BI_DELAY_S,1.0E-6,s,TRANSFER_INJECTION
YRT1LC1_TO_YRT1MH2_TIMEPARAM/TIMING_BI_WINDOW_S,1.0E-6,s,TRANSFER_INJECTION
YRT1LC1_TO_YRT1MH2_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,BEAMOUT_INIT
YRT1LC1_TO_YRT1MH2_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,TRANSFER_INJECTION
YRT1LC1_TO_YRT1MH2_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,STATIC
YRT1LC1_TO_YRT1MH2_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,STATIC
YRT1LC1_TO_YRT1MH2_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,STATIC
YRT1LC1_TO_YRT1MH2_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,STATIC
YRT1LC1_TO_YRT1MH2_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,STATIC
YRT1LC1_TO_YRT1MH2_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,STATIC
YRT1LC1_TO_YRT1MH2_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,STATIC
YRT1LC1_TO_YRT1MH2_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,STATIC
YRT1LC1_TO_YRT1MH2_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,STATIC
YRT1LC1_TO_YRT1MH2_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,BEAMOUT_RESET
YRT1LC1_TO_YRT1MH2_TIMEPARAM/TIMING_RF_LEAD_S,4.0E-4,s,TRANSFER_INJECTION
LOGICAL.YRT1BR1/ACT_ON_BEAM_S,true,,TRANSFER_INJECTION
LOGICAL.YRT1BR1/THIGH_S,0.0025,s,TRANSFER_INJECTION
LOGICAL.YRT1BR1/URF0_S,0.14,V,TRANSFER_INJECTION
LOGICAL.YRT1BR1/U_PAUSE_PULSE_AMPL_S,4.76,V,TRANSFER_INJECTION
LOGICAL.YRT1KH2/HKICK,-2.0E-4,rad,TRANSFER_INJECTION
LOGICAL.YRT1KV2/VKICK,0.0,rad,TRANSFER_INJECTION
LOGICAL.YRT1LD51/ASYMMETRY_KNOB_S,0.0,,TRANSFER_INJECTION
LOGICAL.YRT1LD51/U_QUAD,12000.0,V,TRANSFER_INJECTION
LOGICAL.YRT1LD52/ASYMMETRY_KNOB_S,0.0,,TRANSFER_INJECTION
LOGICAL.YRT1LD52/U_QUAD,-6500.0,V,TRANSFER_INJECTION
LOGICAL.YRT1QD61/K1L,1.7,1/m,TRANSFER_INJECTION
LOGICAL.YRT1QD62/K1L,-1.7,1/m,TRANSFER_INJECTION
LOGICAL.YRT1QD71/K1L,1.5,1/m,TRANSFER_INJECTION
LOGICAL.YRT1QD72/K1L,-1.5,1/m,TRANSFER_INJECTION
YRT1BR1_TO_YRT1MH2_BEAM/E_S,298000.0,eV/u,TRANSFER_INJECTION
YRT1BR1_TO_YRT1MH2_RF/PHASE_OFFSET_S,0.0,deg,TRANSFER_INJECTION
LOGICAL.GHTYKH4/HKICK,0.0,rad,TRANSFER_INJECTION
LOGICAL.GHTYKV3/VKICK,0.0,rad,TRANSFER_INJECTION
LOGICAL.GHTYKV4/VKICK,-0.001,rad,TRANSFER_INJECTION
LOGICAL.GHTYQD41/K1L,1.4,1/m,TRANSFER_INJECTION
LOGICAL.GHTYQD42/K1L,-1.2,1/m,TRANSFER_INJECTION
LOGICAL.YR01LP1I/ESEP_HKICK_S,0.008,rad,TRANSFER_INJECTION
LOGICAL.YR01LP1I/ESEP_K0L_THEO_S,-0.05,rad,TRANSFER_INJECTION
LOGICAL.YR01LP2I/ESEP_HKICK_S,-0.018,rad,TRANSFER_INJECTION
LOGICAL.YR01LP2I/ESEP_K0L_THEO_S,0.055,rad,TRANSFER_INJECTION
LOGICAL.YR01MP1I/HKICK,0.0025,rad,TRANSFER_INJECTION
LOGICAL.YR01MP1I/K0L_THEO,0.29322,rad,TRANSFER_INJECTION
LOGICAL.YRT1MH2/HKICK_ESR_S,-0.61087,rad,TRANSFER_INJECTION
LOGICAL.YRT1MH2/HKICK_LOCAL_S,-0.021,rad,TRANSFER_INJECTION
LOGICAL.YRT1MH2/K0L_THEO,-0.61087,rad,TRANSFER_INJECTION
YRT1MH2_TO_CRYRING_TIMEPARAM/TIMING_BI_DELAY_S,1.0E-6,s,TRANSFER_INJECTION
YRT1MH2_TO_CRYRING_TIMEPARAM/TIMING_BI_WINDOW_S,1.0E-6,s,TRANSFER_INJECTION
YRT1MH2_TO_CRYRING_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,BEAMOUT_INIT
YRT1MH2_TO_CRYRING_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,TRANSFER_INJECTION
YRT1MH2_TO_CRYRING_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,STATIC
YRT1MH2_TO_CRYRING_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,STATIC
YRT1MH2_TO_CRYRING_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,STATIC
YRT1MH2_TO_CRYRING_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,STATIC
YRT1MH2_TO_CRYRING_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,STATIC
YRT1MH2_TO_CRYRING_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,STATIC
YRT1MH2_TO_CRYRING_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,STATIC
YRT1MH2_TO_CRYRING_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,STATIC
YRT1MH2_TO_CRYRING_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,STATIC
YRT1MH2_TO_CRYRING_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,BEAMOUT_RESET
YRT1MH2_TO_CRYRING_TIMEPARAM/TIMING_SEPTUM_TRIGGER_OFFSET_S,0.0,s,TRANSFER_INJECTION
CRYRINGB2B/B2B_SID_EXT_S,---,,RING_INJECTION
CRYRINGB2B/B2B_SOURCE_KICKER_DELAY_S,---,s,RING_INJECTION
CRYRINGB2B/B2B_SOURCE_TRIGGER_OFFSET_S,---,deg,RING_INJECTION
CRYRINGB2B/B2B_TRIGGER_OFFSET_S,0.0,deg,RING_INJECTION
CRYRINGB2B/B2B_TRIGGER_OFFSET_TIME_S,0.0,,RING_INJECTION
CRYRINGBEAM/BEAM_MODE_S,NO_BEAM,,RING_INJECTION
CRYRINGBEAM/BRHO_CHIMNEY_S,---,Tm,BEAMOUT_INIT
CRYRINGBEAM/BRHO_CHIMNEY_S,---,Tm,BEAMOUT_RESET
CRYRINGBEAM/BRHO_DISPLAY_S,0.1583,Tm,RING_INJECTION
CRYRINGBEAM/BRHO_DISPLAY_S,0.205,Tm,RING_RF_MANIPULATION
CRYRINGBEAM/BRHO_DISPLAY_S,0.205,Tm,RING_TARGET
CRYRINGBEAM/BRHO_START_END_S,[0.15826692, 0.15826692],Tm,RING_INJECTION
CRYRINGBEAM/BUCKETFILL_RAW_S,[[0.0, 0.0]],,RING_INJECTION
CRYRINGBEAM/BUCKETFILL_RAW_S,[[0.0, 1.4]],,RING_BUNCHING
CRYRINGBEAM/BUCKETFILL_RAW_S,[[1.4, 1.4]],,RING_RAMP
CRYRINGBEAM/BUCKETFILL_RAW_S,[[1.4, 1.4]],,RING_RF_MANIPULATION
CRYRINGBEAM/BUCKETFILL_RAW_S,[[1.4, 1.4]],,RING_RAMP
CRYRINGBEAM/BUCKETFILL_RAW_S,[[1.4, 0.0]],,RING_REBUNCHING
CRYRINGBEAM/BUCKETFILL_RAW_S,[[0.0, 0.0]],,RING_TARGET
CRYRINGBEAM/BUCKETFILL_RAW_S,[[0.0, 0.0]],,RING_INTERMEDIATE
CRYRINGBEAM/BUCKETFILL_SIMPLE_S,1.4,,RING_INJECTION
CRYRINGBEAM/CHIMNEY_B,---,,BEAMOUT_INIT
CRYRINGBEAM/CHIMNEY_B,---,,BEAMOUT_RESET
CRYRINGBEAM/CH_END_S,5.0655,,RING_INJECTION
CRYRINGBEAM/CH_END_S,5.0655,,RING_RAMP
CRYRINGBEAM/CH_END_S,5.0655,,RING_RAMP
CRYRINGBEAM/CH_END_S,---,,STORAGE_MANIP_WAIT
CRYRINGBEAM/COASTING_BEAM_B,true,,RING_REBUNCHING
CRYRINGBEAM/CV_END_S,-5.3921,,RING_INJECTION
CRYRINGBEAM/CV_END_S,-5.3921,,RING_RAMP
CRYRINGBEAM/CV_END_S,-5.3921,,RING_RAMP
CRYRINGBEAM/CV_END_S,---,,STORAGE_MANIP_WAIT
CRYRINGBEAM/DELTAR,-0.00225,m,RING_INJECTION
CRYRINGBEAM/DELTAR,0.0,m,RING_RF_MANIPULATION
CRYRINGBEAM/DELTAR,-5.0E-4,m,STORAGE_MANIP_WAIT
CRYRINGBEAM/DELTAR,-5.0E-4,m,RING_TARGET
CRYRINGBEAM/DELTAR,-5.0E-4,m,RING_INTERMEDIATE
CRYRINGBEAM/DPBL,0.0,,RING_INJECTION
CRYRINGBEAM/DPBL,0.0,,STORAGE_MANIP_WAIT
CRYRINGBEAM/DPFREV,0.0035,,RING_INJECTION
CRYRINGBEAM/DPFREV,0.004,,RING_RF_MANIPULATION
CRYRINGBEAM/DPFREV,0.00775,,STORAGE_MANIP_WAIT
CRYRINGBEAM/DPFREV,0.00775,,RING_TARGET
CRYRINGBEAM/DPFREV,0.00775,,RING_INTERMEDIATE
CRYRINGBEAM/DP_OVER_P_S,0.0014,,RING_INJECTION
CRYRINGBEAM/E_S,298000.0,eV/u,RING_INJECTION
CRYRINGBEAM/E_S,500000.0,eV/u,RING_RAMP
CRYRINGBEAM/E_S,500000.0,eV/u,RING_RAMP
CRYRINGBEAM/FINAL_HARMONIC_S,2,,RING_RF_MANIPULATION
CRYRINGBEAM/FREV,140363.587,Hz,RING_INJECTION
CRYRINGBEAM/FREV,181811.9976,Hz,RING_RF_MANIPULATION
CRYRINGBEAM/FREV,182373.299,Hz,RING_TARGET
CRYRINGBEAM/H_INPUT_S,2,,RING_INJECTION
CRYRINGBEAM/INJ_EMIH_S,1.0E-5,m*rad,RING_INJECTION
CRYRINGBEAM/INJ_EMIL_S,0.006665753393459646,eVs/u,RING_INJECTION
CRYRINGBEAM/INJ_EMIV_S,1.0E-5,m*rad,RING_INJECTION
CRYRINGBEAM/KL_AMPL_S,0.0,,RING_INJECTION
CRYRINGBEAM/KL_AMPL_S,0.0,,RING_BUNCHING
CRYRINGBEAM/KL_AMPL_S,0.0,,RING_POST_INJECTION
CRYRINGBEAM/KL_AMPL_S,0.0,,RING_MANI_PRE_RAMP
CRYRINGBEAM/KL_AMPL_S,0.0,,RING_RAMP
CRYRINGBEAM/KL_AMPL_S,0.0,,RING_RF_MANIPULATION
CRYRINGBEAM/KL_AMPL_S,0.0,,RING_RAMP
CRYRINGBEAM/KL_AMPL_S,0.0,,RING_REBUNCHING
CRYRINGBEAM/KL_AMPL_S,0.0,,RING_TARGET
CRYRINGBEAM/KL_AMPL_S,0.0,,RING_INTERMEDIATE
CRYRINGBEAM/KL_HARM_S,1,,RING_INJECTION
CRYRINGBEAM/KL_HARM_S,1,,RING_BUNCHING
CRYRINGBEAM/KL_HARM_S,1,,RING_POST_INJECTION
CRYRINGBEAM/KL_HARM_S,1,,RING_MANI_PRE_RAMP
CRYRINGBEAM/KL_HARM_S,1,,RING_RAMP
CRYRINGBEAM/KL_HARM_S,1,,RING_RF_MANIPULATION
CRYRINGBEAM/KL_HARM_S,1,,RING_RAMP
CRYRINGBEAM/KL_HARM_S,1,,RING_REBUNCHING
CRYRINGBEAM/KL_HARM_S,1,,RING_TARGET
CRYRINGBEAM/KL_HARM_S,1,,RING_INTERMEDIATE
CRYRINGBEAM/KL_OFFSET_S,0.0,,RING_INJECTION
CRYRINGBEAM/KL_OFFSET_S,0.0,,RING_BUNCHING
CRYRINGBEAM/KL_OFFSET_S,0.0,,RING_POST_INJECTION
CRYRINGBEAM/KL_OFFSET_S,0.0,,RING_MANI_PRE_RAMP
CRYRINGBEAM/KL_OFFSET_S,0.0,,RING_RAMP
CRYRINGBEAM/KL_OFFSET_S,0.0,,RING_RF_MANIPULATION
CRYRINGBEAM/KL_OFFSET_S,0.0,,RING_RAMP
CRYRINGBEAM/KL_OFFSET_S,0.0,,RING_REBUNCHING
CRYRINGBEAM/KL_OFFSET_S,0.0,,RING_TARGET
CRYRINGBEAM/KL_OFFSET_S,0.0,,RING_INTERMEDIATE
CRYRINGBEAM/KL_PHASE_S,0.0,deg,RING_INJECTION
CRYRINGBEAM/KL_PHASE_S,0.0,deg,RING_BUNCHING
CRYRINGBEAM/KL_PHASE_S,0.0,deg,RING_POST_INJECTION
CRYRINGBEAM/KL_PHASE_S,0.0,deg,RING_MANI_PRE_RAMP
CRYRINGBEAM/KL_PHASE_S,0.0,deg,RING_RAMP
CRYRINGBEAM/KL_PHASE_S,0.0,deg,RING_RF_MANIPULATION
CRYRINGBEAM/KL_PHASE_S,0.0,deg,RING_RAMP
CRYRINGBEAM/KL_PHASE_S,0.0,deg,RING_REBUNCHING
CRYRINGBEAM/KL_PHASE_S,0.0,deg,RING_TARGET
CRYRINGBEAM/KL_PHASE_S,0.0,deg,RING_INTERMEDIATE
CRYRINGBEAM/NPARTICLES_S,1000.0,,RING_INJECTION
CRYRINGBEAM/PARTICLE_SYMBOL_INPUT_S,2H,,RING_INJECTION
CRYRINGBEAM/QH_END_S,2.29,,RING_INJECTION
CRYRINGBEAM/QH_END_S,---,,RING_POST_INJECTION
CRYRINGBEAM/QH_END_S,2.35,,RING_RAMP
CRYRINGBEAM/QH_END_S,2.34,,RING_RAMP
CRYRINGBEAM/QH_END_S,---,,STORAGE_MANIP_WAIT
CRYRINGBEAM/QV_END_S,2.55,,RING_INJECTION
CRYRINGBEAM/QV_END_S,---,,RING_POST_INJECTION
CRYRINGBEAM/QV_END_S,2.55,,RING_RAMP
CRYRINGBEAM/QV_END_S,2.55,,RING_RAMP
CRYRINGBEAM/QV_END_S,---,,STORAGE_MANIP_WAIT
CRYRINGBEAM/Q_INPUT_S,1,,RING_INJECTION
CRYRINGBEAM/TREV,7.12435E-6,s,RING_INJECTION
CRYRINGBEAM/USE_SIMPLE_BF_B,true,,RING_INJECTION
CRYRINGBUMPER/TFALL_S,1.5E-4,s,RING_INJECTION
CRYRINGIKICKER/KICKER_TOFFSET1_S,0.0,s,RING_INJECTION
CRYRINGOPTICS/OPTIC_NAME_RING_S,CRYRING_STANDARD_OPTICS_TABLE,,RING_INJECTION
CRYRINGOPTICS/TAU_END_S,0.0,,RING_INJECTION
CRYRINGOPTICS/TAU_END_S,---,,RING_POST_INJECTION
CRYRINGOPTICS/TAU_END_S,0.0,,RING_RAMP
CRYRINGOPTICS/TAU_END_S,0.0,,RING_RAMP
CRYRINGORBIT/COH02,0.0,m,RING_INJECTION
CRYRINGORBIT/COH02,0.0,m,RING_RF_MANIPULATION
CRYRINGORBIT/COH02,0.0,m,STORAGE_MANIP_WAIT
CRYRINGORBIT/COH02,0.0,m,RING_TARGET
CRYRINGORBIT/COH03,0.0,m,RING_INJECTION
CRYRINGORBIT/COH03,0.0,m,RING_RF_MANIPULATION
CRYRINGORBIT/COH03,0.0,m,STORAGE_MANIP_WAIT
CRYRINGORBIT/COH03,0.0,m,RING_TARGET
CRYRINGORBIT/COH04,0.0,m,RING_INJECTION
CRYRINGORBIT/COH04,0.0,m,RING_RF_MANIPULATION
CRYRINGORBIT/COH04,0.0,m,STORAGE_MANIP_WAIT
CRYRINGORBIT/COH04,0.0,m,RING_TARGET
CRYRINGORBIT/COH06,0.0,m,RING_INJECTION
CRYRINGORBIT/COH06,0.0,m,RING_RF_MANIPULATION
CRYRINGORBIT/COH06,-0.009,m,STORAGE_MANIP_WAIT
CRYRINGORBIT/COH06,-0.009,m,RING_TARGET
CRYRINGORBIT/COH07,0.0,m,RING_INJECTION
CRYRINGORBIT/COH07,0.0,m,RING_RF_MANIPULATION
CRYRINGORBIT/COH07,0.0,m,STORAGE_MANIP_WAIT
CRYRINGORBIT/COH07,0.0,m,RING_TARGET
CRYRINGORBIT/COH08,0.0,m,RING_INJECTION
CRYRINGORBIT/COH08,0.0,m,RING_RF_MANIPULATION
CRYRINGORBIT/COH08,0.0,m,STORAGE_MANIP_WAIT
CRYRINGORBIT/COH08,0.0,m,RING_TARGET
CRYRINGORBIT/COH10,0.0,m,RING_INJECTION
CRYRINGORBIT/COH10,0.0,m,RING_RF_MANIPULATION
CRYRINGORBIT/COH10,0.0,m,STORAGE_MANIP_WAIT
CRYRINGORBIT/COH10,0.0,m,RING_TARGET
CRYRINGORBIT/COH11,0.0,m,RING_INJECTION
CRYRINGORBIT/COH11,0.0,m,RING_RF_MANIPULATION
CRYRINGORBIT/COH11,0.0,m,STORAGE_MANIP_WAIT
CRYRINGORBIT/COH11,0.0,m,RING_TARGET
CRYRINGORBIT/COH12,0.0,m,RING_INJECTION
CRYRINGORBIT/COH12,0.0,m,RING_RF_MANIPULATION
CRYRINGORBIT/COH12,0.0,m,STORAGE_MANIP_WAIT
CRYRINGORBIT/COH12,0.0,m,RING_TARGET
CRYRINGORBIT/COV02,0.0,m,RING_INJECTION
CRYRINGORBIT/COV02,0.0,m,RING_RF_MANIPULATION
CRYRINGORBIT/COV02,0.0,m,STORAGE_MANIP_WAIT
CRYRINGORBIT/COV02,0.0,m,RING_TARGET
CRYRINGORBIT/COV03,0.0,m,RING_INJECTION
CRYRINGORBIT/COV03,0.0,m,RING_RF_MANIPULATION
CRYRINGORBIT/COV03,0.0,m,STORAGE_MANIP_WAIT
CRYRINGORBIT/COV03,0.0,m,RING_TARGET
CRYRINGORBIT/COV04,0.0,m,RING_INJECTION
CRYRINGORBIT/COV04,0.0,m,RING_RF_MANIPULATION
... 679 more lines ...
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| Attachment 3: Screenshot_from_2025-06-02_21-03-11.png
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| Attachment 4: overlap.png
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| Attachment 5: Screenshot_from_2025-06-03_00-19-00.png
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| Attachment 6: Screenshot_from_2025-06-03_00-19-13.png
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| Attachment 7: Screenshot_from_2025-06-03_00-19-28.png
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| Attachment 8: Screenshot_from_2025-06-03_00-19-28.png
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| Attachment 9: Screenshot_from_2025-06-03_00-19-52.png
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| Attachment 10: Screenshot_from_2025-06-03_00-20-01.png
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| Attachment 11: Screenshot_from_2025-06-03_04-11-15.png
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| Attachment 12: Screenshot_from_2025-06-03_07-26-29.png
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| Attachment 13: beamCalc-D5.png
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714
|
Mon Jun 2 17:48:07 2025 |
JG, AG | Run 44 scraper tests | Same settings are Run 43 but with coasting beam and scrapers set to: 30 / - 30 mm.
all checks ok, but WR timestamp error, see attached
19:28 the Run 44 has been stopped. |
| Attachment 1: Screenshot_from_2025-06-02_18-51-24.png
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| Attachment 2: Screenshot_from_2025-06-02_19-27-31.png
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713
|
Mon Jun 2 17:25:31 2025 |
JG, AG | Run 43 scraper tests | Same settings are Run 42 but bunched beam and scrapers set to: 30 / - 30 mm.
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|
712
|
Mon Jun 2 16:35:35 2025 |
EW, AG | Run 42 and scraper tests | 17:00
Scraper tests conducted. We tried moving in the scrapers both at a fixed position throughout and also moving with the injection cycle.
We were unable to find a good position with the scrapers that did not produce significant scattering in the detectors.
Therefore we have moved the scrapers back to the fully out position.
Run 42 started.
We have increased the storage time to 10 reps (1 minute) in order to investigate the shoulders on the 3He peaks online and whether it is likely from injection. I think it is likely just a calibration issue
D+ beam deuterium target. D+ beam energy is 0.75 MeV/u. (beam calc calculation is 0.7619 MeV/u). See previous entry for beamcalc.
Beam calc - Attachment 1
Target density is about 2e12 at/cm2
All four detectors positioned fully out and stationary.
Left potentiometer = 18.86 mm
Right potentiometer = 19.8 mm
Ring cycle time is 60 seconds. Note we see some hydrogen in in the spectrum, this disapears after a few seconds.
Target T1=30.0K, T2=31.6K.
Nozzle position x=-2.96, z=1.72 mm
YR09-Etarget pressure = 2.0e-10 mbar.
Cooler set value = 439 V, 15 mA. Read value = 439.81 V, 12.88 mA
All leakage currents look good
Beam position. Vertical =0.0mm , Horizontal=-1.5 mm
Beam intensity ~6e8 on bunched beam, 6e8 on coasting.
Data rate ~ 416kB/s
slow comparator threshold to 0x24 (360 keV) |
| Attachment 1: Screenshot_from_2025-06-02_17-44-07.png
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| Attachment 2: Screenshot_from_2025-06-02_17-44-50.png
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711
|
Mon Jun 2 09:30:38 2025 |
JM, EW, ST | Run 41 | Run 41 started.
D+ beam deuterium target. D+ beam energy is 0.75 MeV/u. (beam calc calculation is 0.7619 MeV/u). See previous entry for beamcalc.
Beam calc - Attachment 1
Target density is about 3e12 at/cm2
All four detectors positioned fully out and stationary.
Left potentiometer = 18.86 mm
Right potentiometer = 19.8 mm
Ring cycle time is 25 seconds. Note we see some hydrogen in in the spectrum, this disapears after a few seconds.
Target T1=30.0K, T2=31.9K.
Nozzle position x=-2.96, z=1.72 mm
YR09-Etarget pressure = 2.0e-10 mbar.
Cooler set value = 439 V, 15 mA. Read value = 439.81 V, 12.88 mA
All leakage currents look good
Beam position. Vertical =0.0mm , Horizontal=-1.5 mm
Beam intensity ~3e8 on bunched beam, 3e8 on coasting. Gleb has increased the intensity this morning.
Data rate ~ 403kB/s
Lowered slow comparator threshold to 0x24 (360 keV)
13:20 Run stopped
Wolfgang tuning next beam energy
All checks fine
Total stats: 7827,4085,1821
OFFLINE CHECK
I have check Run41 and applied the gain calibration from 2024 in addition to a tigher EyEx energy cut (600 keV from 3 MeV for the online script). We no longer see the larger hump to the side of the 3He peak in DSSD1. See final attachment for comparison.
Note no time cuts have been applied to this spectra.and a more rigourous gain calibration using the igher energy D+ runs will likely improve things further. |
| Attachment 1: Screenshot_from_2025-06-02_10-37-39.png
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| Attachment 2: Screenshot_from_2025-06-02_10-38-36.png
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| Attachment 3: Screenshot_from_2025-06-02_13-21-06.png
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| Attachment 4: Screenshot_from_2025-06-02_13-20-36.png
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| Attachment 5: Screenshot_from_2025-06-02_13-20-19.png
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| Attachment 6: DSSD1-Ey.png
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710
|
Sun Jun 1 15:33:50 2025 |
EW, JM, CB | Run 40 | 16:30
Run 40 started.
D+ beam deuterium target. D+ beam energy is 0.75 MeV/u. (beam calc calculation is 0.7619 MeV/u)
Beam calc - Attachment 1
Target density is about 1e12 at/cm2
All four detectors positioned fully out and stationary.
Left potentiometer = 18.86 mm
Right potentiometer = 19.8 mm
Ring cycle time is 30 seconds. Note we see some hydrogen in in the spectrum, this disapears after a few seconds.
Target T1=30.1K, T2=31.9K.
Nozzle position x=-2.96, z=1.72 mm
YR09-Etarget pressure = 2.55e-10 mbar.
Cooler set value = 439 V, 15 mA. Read value = 439.81 V, 12.88 mA
All leakage currents look good
Beam position. Vertical =0.0mm , Horizontal=-1.5 mm
Beam intensity ~1e8 on bunched beam, 1e7 on coasting. This is less intensity than higher energies, may require an increase in the morning.
Data rate ~ 403kB/s
Lowered slow comparator threshold to 0x24 (360 keV) since we decreased beam energy.
18:36
Temps OK - attached
Rates OK - attached
Merger OK - attached.
Spectra appear to have a flat background to the right of Rutherford that was not there at higher energies.
The xy plot also does not seem to be as centered.
21:17
Tems OK
Stats OK
Merger OK
Leakage current stable
Run continues OK
Ring vacuum 2E-10 mbar, likely getting less target.
02:00
Temps OK
Stats OK
Merger OK
Leakage current OK
Run continues - attached
Ring vacuum as before
04:20
Temps OK
Stats OK
Merger OK
L. current stable
Run continues
Ring vacuum as before
07:00
All checks OK
Leakage currents remain stable.
We have accumulated good statistics. 3He peak does seem a bit off. Cooling could be slightly off. Problem is not so bad looking at Ey compared to Ex. Online code uses pulser calibration only so may be a bit off depending on Ey/Ex.
Target density has been stable in the 1e12-2e12 at/cm2 range overnight. A bit more would be good.
Will ask on call operator to check cooling and try to increase intensity.
Run stopped gas target off.
07:30
Note during the tuning process we observed the same structure at 2.5 MeV in DSSD 1 as we did overnight that may overlap with the 3He peak. Perhaps it can be removed offline. See final attachment
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| Attachment 1: Screenshot_from_2025-06-01_16-38-55.png
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| Attachment 2: beamCalc-D4.png
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| Attachment 3: Screenshot_from_2025-06-01_18-33-17.png
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| Attachment 4: Screenshot_from_2025-06-01_18-33-35.png
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| Attachment 5: Screenshot_from_2025-06-01_18-34-06.png
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| Attachment 6: Screenshot_from_2025-06-01_18-36-19.png
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| Attachment 7: Screenshot_from_2025-06-01_18-36-26.png
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| Attachment 8: Screenshot_from_2025-06-02_02-03-19.png
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| Attachment 9: Screenshot_from_2025-06-02_07-16-07.png
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| Attachment 10: Screenshot_from_2025-06-02_07-37-04.png
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709
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Sun Jun 1 07:46:34 2025 |
JM, EM, CB | Run 39 | 08:45
Run 39 started.
D+ beam deuterium target. D+ beam energy is 1.0 MeV/u. (beam calc calculation is 1.0151 MeV/u)
Beam calc - Attachment 1
Target density is about 5e12 at/cm2
All four detectors positioned fully out and stationary.
Left potentiometer = 18.86 mm
Right potentiometer = 19.8 mm
Ring cycle time is 1 minute. Note we see some hydrogen in in the spectrum, this disapears after a few seconds.
Target T1=30.1K, T2=31.9K.
Nozzle position x=-2.96, z=1.72 mm
YR09-Etarget pressure = 2.55e-10 mbar.
Cooler set value = 575 V, 15 mA. Read value = 575.8 V, 12.9 mA
All leakage currents look good
Beam position. Vertical =0.0mm , Horizontal=-1.25 mm
Beam intensity ~1e8. We appear to lose intensity when reducing energy. It is still sufficient to for our purposes.
09.38
CRYRING vacuum and ambient temperature - attachments 2-3
09:58
All checks OK.
Target density is ~7e12 at/cm2
Data rate ~300kB/sec
All leakage currents look OK
After 1 hour we have 3671, 2515 and 1064 in each peak respectively. This is also logged on the google docs form in same tab as elog.
10:36
Temps OK
Data rate OK 326 kB/sec
Leakage currents stable
12:30
Temps ok - attach
Rates ok - attach
Merger ok - attach
14:20
Run stopped for energy change. |
| Attachment 1: screenshot-2025-06-01_08-48-132701843244570721227.png
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| Attachment 2: Capture.PNG
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| Attachment 3: Capture_2.PNG
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708
|
Sat May 31 10:46:42 2025 |
TD | Run 38 - remote monitoring |
11.40 DAQ continues
File G22-205/R38
ASIC settings
slow comparator 0x32 all FEE64s
DSSSD bias & leakage current OK - attachments 1-2
FEE64 temps OK - attachment 3
ADC data item stats OK - attachment 4
WR timestamps OK - attachment 5
per FEE64 Rate spectra - attachment 6
Merger & Tape Server - attachments 7-8
filesystem /mnt/data1 4.7Tb remaining
Online analysis - per DSSSD energy spectra - elastic peak max count / channel c. 250-300Hz - attachment 9
CRYRING vacuum & temperature - attachments 10-12
YR09 e-target gauge indicates vacuum transients from high e-11 to low e-9mbar presumably due to high density D2 target
11.42 All histograms & stats zero'd
17.36 DSSSD bias & leakage current OK - attachments 13-14
FEE64 temps OK - attachment 15
ADC data item stats OK - attachment 16
per FEE64 Rate spectra - attachment 17
per FEE64 1.8.L spectra - attachments 18-19
aida11 p+n pulser peak width 63 ch FWHM
aida03 n+n pulser peak width 85 ch FWHM
Merger - attachment 20
Online analysis spectra - elastic peak max count / channel c. few Hz - attachment 21
rates much lower than earlier - no beam and/or no target - alert JM |
| Attachment 1: Screenshot_from_2025-05-31_11-40-15.png
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| Attachment 2: Screenshot_from_2025-05-31_11-40-34.png
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| Attachment 3: Screenshot_from_2025-05-31_11-41-01.png
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| Attachment 4: Screenshot_from_2025-05-31_11-41-18.png
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| Attachment 5: Screenshot_from_2025-05-31_11-42-27.png
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| Attachment 6: Screenshot_from_2025-05-31_11-43-50.png
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| Attachment 7: Screenshot_from_2025-05-31_11-44-54.png
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| Attachment 8: Screenshot_from_2025-05-31_11-45-10.png
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| Attachment 9: Screenshot_from_2025-05-31_11-46-08.png
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| Attachment 10: Capture.PNG
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| Attachment 11: Capture_2.PNG
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| Attachment 12: Capture_3.PNG
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| Attachment 13: Screenshot_from_2025-05-31_17-26-17.png
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| Attachment 14: Screenshot_from_2025-05-31_17-03-49.png
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| Attachment 15: Screenshot_from_2025-05-31_17-03-18.png
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| Attachment 16: Screenshot_from_2025-05-31_17-03-38.png
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| Attachment 18: Screenshot_from_2025-05-31_17-27-39.png
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| Attachment 19: Screenshot_from_2025-05-31_17-27-39.png
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| Attachment 20: Screenshot_from_2025-05-31_17-36-49.png
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| Attachment 21: Screenshot_from_2025-05-31_17-37-07.png
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707
|
Sat May 31 09:58:21 2025 |
JM | Run 38 | 10:56
Run 38 started.
D+ beam deuterium target. D+ beam energy is 1.5 MeV/u. (beam calc calculation is 1.5160 MeV/u)
Beam calc - Attachment 1
Target density is about 8.5e12 at/cm2 after moving nozzle this morning.
All four detectors positioned fully out and stationary.
Left potentiometer = 18.86 mm
Right potentiometer = 19.8 mm
Ring cycle time is 1 minute. Note we see some hydrogen in in the spectrum, this disapears after a few seconds.
Target T1=30K, T2=31.9K.
Nozzle position x=-2.89, z=1.72 mm
YR09-Etarget pressure = 2.37e-10 mbar.
Cooler set value = 846V, 15 mA. Read value = 847.378V, 13.105mA
Detector 4 looks OK at the moment.
Beam position. Vertical =0.0mm , Horizontal=2.5mm
11:05
All checks OK
Data rate is ~300 kB/sec.
Leakage currents - attachments 2,3
17:56
Rates have dropped significantly. Do not see elastics peak. No beam?
18:23
Check in with HKR. The thunder and lightning storm appears to have knocked out the beam from 17:30 until 18:10.
Beam is now back with an intensity of 2e8 pps.
I have also adjusted the nozzle of the gas target slightly and recovered target pressure of 1e13 from 3e11 at/cm2. This has been stable for the last 15 minutes. I think during shifts we will require some nozzle modifications. It is not vital at higher energies but for energies during the week, we will need.
We again see the very nice elastic scattering pattern on our detector. I am concerned we may be some shadowing on our detector giving rise to the observed circle? Attachment 5
20:30
Checks all OK
Target density in last 30 mins ~1e13 at/cm2
DSSD4 still looking good and stable
23:00
All checks OK.
Detectors all stable
Target density still in 1e13 range.
We have accumulated lots of stats! This run should provide an excellent run for energy calibration using elastics and reaction peaks.
We run overnight and change energy in the morning
01:00
All checks OK
Detectors stable
Target density stable 1e13.
05:00
All good still
07:05
Run stopped to change energy. Gas target off.
final statistics plot attached.
Leakage currents overnight also. DSSD4 had two transients during the night but recovered. |
| Attachment 1: beamCalc-D2.png
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| Attachment 2: Screenshot_from_2025-05-31_11-07-00.png
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| Attachment 3: Screenshot_from_2025-05-31_11-06-50.png
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| Attachment 4: Screenshot_from_2025-05-31_17-55-33_1.png
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| Attachment 6: Screenshot_from_2025-05-31_23-04-18.png
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| Attachment 7: Screenshot_from_2025-06-01_07-10-13.png
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| Attachment 8: Screenshot_from_2025-06-01_07-10-21.png
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| Attachment 9: Screenshot_from_2025-06-01_07-10-30.png
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| Attachment 10: Screenshot_from_2025-06-01_07-30-28.png
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706
|
Fri May 30 21:49:08 2025 |
JM, NP, CB | Run 37 | 22:49
Run 37 started.
D+ beam deuterium target. D+ beam energy is 2 MeV/u. (beam calc calculation is 1.9211 MeV/u)
Target density is about 1.3e12 at/cm2. FLuctuations between 1e12 and 1e13 at/cm2.
All four detectors positioned fully out and stationary.
Left potentiometer = 18.86 mm
Right potentiometer = 19.8 mm
Ring cycle time is 1 minute. Note we see some hydrogen in in the spectrum, this disapears after a few seconds.
Target T1=30K, T2=31.9K.
Nozzle position x=-3.11, z=1.77 mm
YR09-Etarget pressure = 1.04e-10 mbar.
Cooler set value = 1126V, 15 mA. Read value = 1068V, 13.22 mA
Detector 4 is still a bit unstable in its leakage current but the data coming through looks good. Some crap is periodically written to disk when leakage current spikes. Attachment 1,2 for leakage currents.
23:30
Checks OK - high but managable rates from DSSD4
01:00
Checks OK - DSSD4 has settled down. Leakage current attachment 1
Ex energy histograms - attachment 2
X2go check on gas target shows density has dropped to 5e11 at/cm2 in last half an hour.
03:56
Checks OK
DSSD had more issues but once more settled
Temps OK
Rates OK
DAQ continuing
06:00
Checks OK
08:00
We can now change to 1.5 MeV/u no storage mode enabled. |
| Attachment 1: Screenshot_from_2025-05-31_00-56-32.png
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| Attachment 2: Screenshot_from_2025-05-31_00-58-40.png
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| Attachment 3: Screenshot_from_2025-05-31_06-16-50.png
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705
|
Fri May 30 20:47:47 2025 |
JM, CB, NP | Run 36 | 21:47
Run 36 started.
D+ beam deuterium target. D+ beam energy is 2 MeV/u.
Target density is about 1.6e12 at/cm2. FLuctuations between 1e12 and 1e13 at/cm2.
Detectors are now IN with the servo motors only. Detectors are stationary.
Left potentiometer = 36.54 mm
Right potentiometer = 37.96 mm
Ring cycle time is 1 minute. Note we see some hydrogen in in the spectrum, this disapears after a few seconds.
Target T1=30K, T2=31.9K.
Nozzle position x=-3.12, z=1.72 mm
YR09-Etarget pressure = 2.29e-10 mbar.
Cooler set value = 1126V, 15 mA. Read value = 1068V, 13.22 mA
Detector 4 is still a bit unstable in its leakage current but the data coming through looks good. Some crap is periodically written to disk when leakage current spikes.
We will run like this for an hour then move detectors back out for overnight run.
after 1 hour of beamtime we stop.
Attachment 1 - xy plot
Attachment 2 - energy histogram NUCLEAR |
| Attachment 1: Screenshot_from_2025-05-30_22-45-48.png
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| Attachment 2: Screenshot_from_2025-05-30_22-46-48.png
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704
|
Fri May 30 20:06:48 2025 |
JM, CB, NP | Run35 | 21:00
Run 35 started.
D+ beam deuterium target. D+ beam energy is 2 MeV/u. (beam calc calculation is 1.9211 MeV/u -> may be wrong cooler voltage, need to check grafana)
Target density is about 4e12 at/cm2. FLuctuations between 1e12 and 1e13 at/cm2.
All four detectors positioned fully out and stationary.
Left potentiometer = 18.86 mm
Right potentiometer = 19.8 mm
Ring cycle time is 1 minute. Note we see some hydrogen in in the spectrum, this disapears after a few seconds.
Target T1=30K, T2=31.9K.
Nozzle position x=-3.06, z=1.72 mm
YR09-Etarget pressure = 2.29e-10 mbar.
Cooler set value = 1126V, 15 mA. Read value = 1068V, 13.22 mA
Detector 4 is still a bit unstable in its leakage current but the data coming through looks good. Some crap is periodically written to disk when leakage current spikes. Attachment 1,2 for leakage currents.
Attachment 3,4 data rate to disk and statistics tab for when detector 4 is behaving. When not data rate can spike to 4000 kb/sec. Looks OK at the moment.
Attachment 5 - xy plot. We observe a circular shape on the detector. We are unsure of what this is at the moment. Offline analysis required.
Attachment 6 - energy histogram including Rutherford.
Attachment 7 - energy histogram just nuclear peaks.
Attachment 8 - beam calc with read values. |
| Attachment 1: Screenshot_from_2025-05-30_21-22-53.png
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| Attachment 2: Screenshot_from_2025-05-30_21-23-16.png
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| Attachment 3: Screenshot_from_2025-05-30_21-23-30.png
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| Attachment 4: Screenshot_from_2025-05-30_21-23-56.png
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| Attachment 5: Screenshot_from_2025-05-30_21-26-17.png
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| Attachment 6: Screenshot_from_2025-05-30_21-35-00.png
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| Attachment 7: Screenshot_from_2025-05-30_21-36-58.png
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| Attachment 8: beamCalc-D1.png
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703
|
Fri May 30 07:27:41 2025 |
CB LB JM NP EM | Waiting for deuterium | 08:27
No run going.
Temperatures OK - attach
Attempting to bias channel 3 again. Slowly ramping up.
V = 60, I = 5.3
V = 70, I = 6.1
V = 80, I = 9.0 --> 6.2 (unstable). Decreasing bias.
V = 70, I = 6.0 (stable again)
Leaving at 70 V for a while to condition (?)
Resetting the gnuplot graph. Old caen_current.dat moved to G22-205-caen_current.dat and copied in /TapeServer/G22-205
10:10
Temperatures OK
Leakage current on channel 3 showed some issues, back to stable. See attached.
11:00
Temps OK
Leakage current stable.
Increased bias on channel 3 to 80 V. I = 6.2 uA stable. Leaving for a while.
12:45
Temps OK
Leakage current stable
Increased bias on channel 3 to 90 V. I = 6.3 stable. Leaving for a while.
13:30
Temps OK
Leakage current stable.
Increased bias on channel 3 to 100V. I = 6.3 stable. Hopefully it holds until the end of the beam time.
20:00
Leakage current on channel 3 had issues again and bias was reduced to 50 V. Remained stable. Turned to 60 V now. Still stable. See attachement.
FEEs on detector for -> MEC
Temps OK - attach
Checks as before - attach
Rates OK (four fees not counting as expected) - attach
Deuterium beam in the ring at 2 MeV/A approx 2E8 pps, significant H2+ contamination.
Deuterium target working, fluctuating around 5E12-1E13 atoms/cm2
Vacuum in YR09 - 3E-10 mbar
Beginning beam-target overlap measurements soon. |
| Attachment 1: Screenshot_from_2025-05-30_08-28-08.png
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| Attachment 2: Screenshot_from_2025-05-30_08-37-17.png
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| Attachment 3: Screenshot_from_2025-05-30_10-10-12.png
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| Attachment 4: Screenshot_from_2025-05-30_13-29-57.png
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702
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Thu May 29 18:04:47 2025 |
LB, CB, PMH, JM | Run 32,33,34 | Oven temperature increased, current up to 3.5E7 pps.
Found beam-target overlap setting horizontal bump in RO9 to -2.5mm.
Target T1 30.5K, density increasing to 2.6E11 at/cm2.
19:08 Run 32 start
Moving left detectors (79.69->34.66mm).
Beam energy 1.85 MeV/u nominal
Electron cooler actual values: voltage 1.051 kV, current 0.013215 uA, [voltage divider G35 1.0504 kV]
Stopped run, beam was still in bunch mode.
19:15 Run 33 start
All checks Ok.
Target at 3E11 at/cm2
Attachment 1-2 with rates and temperatures
20:20
Target density 3.4E11 at/cm2. Beam around 2.2-3.6E7 pps.
Checks ok! Spectra attached in att.3.
21:25
all good. Target density 4E11 at/cm^2
22:24
All checks are OK
Noted some variability in the injection intensity. For 15 minutes about half of shots were below 1e7. Perhaps some variability due to end of lithium in oven or increased temperture.
Beam calc with read values - Attachment 4
01:30
All checks OK. Injection intensity has stabilised ~2E7
Target density is stable ~4e11 at/cm2
02:44
Suddenly see very high rates in DSSD4. Detector had tripped. Tried to re-bias but kept tripping.
Set to 70V, leakage current is about 17uA but fluctuates quite wildly. Set to 50V and leakage current is about 6uA but again has wild fluctuations. Not sure of the cause, this detector is not moving and is far from the beam.
Decided to turn detector off to try and protect it. We can re-bias and monitor in the day tomorrow when we do not have beam on target.
This detector has tripped previously but was able to be re-biased at the time. See attachments 5 and 6 for the detector leakage currents.
New Run started R34.
Same conditions as before. DSSD4 turned off. To stop crap writing to disk I have set the corresponding FEEs to the MEC.
In principle we do not need this detector now as it is not moving to see the reaction.
Note I also observed in the system messages we semi regularly get a DHCP request from aida11. It seems to be functioning fine as I see the pulser signal in the spectrum browser. May be worth following up on at a later date. See attachment 7
All other checks OK
Data rate is now ~140 kB/sec
03:15
Tried to bias DSSD4 again. Leakage currents appear fine again.
Left for 5 minutes to gauge stability -> seems fine.
03:22
Have returned aida13, 14, 15, 16 back to LEC. Maintaing the same run (34)
Scratch that. 03:27 detector tripped again. Will just leave it off tonight. Turned those FEEs back to MEC.
06:00
I have quickly looked at Run 33. We clearly see the 7Be again in both detectors. Locus on detector much smaller than at higher energies.
All checks OK
07:07
Run stopped, switching to deuterium.
Detectors moved out
Shutter for gas target off.
Moved to next run -> no storage mode. |
| Attachment 1: Screenshot_from_2025-05-29_19-16-09.png
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| Attachment 2: Screenshot_from_2025-05-29_19-12-46.png
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| Attachment 3: Screenshot_from_2025-05-29_20-23-50.png
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| Attachment 4: beamCalc.png
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| Attachment 5: Screenshot_from_2025-05-30_02-37-55.png
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701
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Thu May 29 14:39:52 2025 |
CB LB PMH | Run 31 | 15:40
Waiting for Serge to come in to change beam energy.
Remaining at the same beam energy and settings as before, except RIGHT arm now moving.
Run 31
37.96 -> 83.69 mm
16:53
Serge arrived. Run ended. Motors out. No storage.
Temps OK
Rates OK
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| Attachment 1: Screenshot_from_2025-05-29_15-41-46.png
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| Attachment 2: Screenshot_from_2025-05-29_15-42-11.png
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| Attachment 6: Screenshot_from_2025-05-29_16-58-18.png
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| Attachment 7: Screenshot_from_2025-05-29_16-58-21.png
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| Attachment 8: Screenshot_from_2025-05-29_16-58-23.png
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| Attachment 9: Screenshot_from_2025-05-29_16-58-26.png
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700
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Wed May 28 16:40:48 2025 |
EH, SN, LB, OF, EBM, CB | Run 28/29/30 - 1.88 MeV/A | We start a new run with real data taking condititon: beam is ok, target density is 1e12 cm-2, detectors are moving in-out periodically.
Cooler voltage setpoint 1066.6 V. Read value 1068 V.
Current read = 0.01325 uA
Beam energy = 1.88 MeV/u (from HKR)
Attachment 1 - beamcalc with nominal values
Attachment 32 - beamcalc with actual values
Right arm at 19.80 mm
Left arm IN at 77.56 mm (OUT 32.77 mm)
vertical beam position 0.0 mm
horizontal beam position -3.0mm
Beam intensity ~1.8e+7 particles.
Target density ~1e12 at/cm2
Target temperatures: T1=31.4 K T2=35.1 K
17:48
aida01 fault 0x0 : 0x1 : 1
FPGA Timestamp error counter test result: Passed 15, Failed 1
All checks OK.
The electron current from beamcalc is the setvalue.
18:51
aida01 fault 0x0 : 0x1 : 1
FPGA Timestamp error counter test result: Passed 15, Failed 1
All checks OK.
20:20
aida01 fault 0x0 : 0x1 : 1
FPGA Timestamp error counter test result: Passed 15, Failed 1
All checks OK.
22:02
Base Current Difference
aida01 fault 0x0 : 0x1 : 1
FPGA Timestamp error counter test result: Passed 15, Failed 1
All checks OK.
23:13
All checks OK. Target stabilized at ~6.7E11 at/cm^2
00:23
All checks good.
01:01
We are observing what seems to be a steady decrease of the target density, currently at around 5e11 at/cm2, whihc also seems to be following a decrease in the temperature T2.
1;40
All checks good. Spectra attached in att. 18. Target density still decreasing (3.7E11 at/vcm2)2
2:54
All checks ok. Attached rates and spectra in att. 19-20. target density decreased as continued, now around 2.5E11 at/cm^2.
We tried to move a bit around the nozzle/target, no effect.
Gone back to original value of x=1000, y=-4200.
Moreover, the screen with the program to move the detector seems to be bugged (gray background, a double window): however, the potentiometer value is chnaging and I see the usual effect of detector moving on the statistics, so i think it is fine
3:38
Checks Ok. Target 2.5E11 at/cm2
4:05
The bug disappeared
4:56
Target density is now 1.9E11 at/cm2. It is very low with respect to before, but our reasoning is that nothing can be done about it at night anyway (apart from moving the nozzle, which we tried without effect). O. pointed out that the beam lifetime is still such that the beam is gone before the next injection.
Checks ok. Attachments 21-22 spectra and xy plot. Some structure in top left?
06:00
All check ok. Target density 1.8E11 at/cm2
6:49
all goo, target 1.7E11 at/cm2
07:30
All checks ok, except timestamp (15 passed, 1 failed, see screenshot)
8:30
Tried moving the nozzle. Minor improvement in target density only. x=-1000 y=-4200
Stopped writing to disk while moving nozzle and stopped the motors. Restarted everything and moved to run 29 - no differences vs. 28.
09:11
Temps OK.
Nautilus does not respond to user commands. Attempint to make it work again without rebooting.
10:05
Stopped to reconsider which arm we are moving. Started to move arms around. Decided to stick with left arm.
Started run 30. Same as 28 and 29.
10:30
Temps OK - attach
Rates OK - attach
Stats OK (taken with arm in) - attach
Current histogram attached
11:40
Something happened to leakage currents. We see an increase in the top-right detector (which recovered) and a decrease in the bottom-right. Neither is moving.
No changes to left arm detectors, which are moving.
Temperature in the cave stable. No effects on the DAQ.
Temps OK
Rates in aida06 at 10k. Fast discriminator at 100k. Checkloaded. OK. Other rates fine.
Will keep monitoring.
11:50
aida06 fast discriminator over 100k. Checkloaded x2. OK now. Other rates fine.
No changes to leakage current.
13:20
Temps OK
Rates OK (aida 06 is no longer counting fast)
Leakage current stable
14:20
Run continues OK
Temps OK
Stats OK
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| Attachment 1: Screenshot_2025-05-28_17-51-17.png
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| Attachment 20: Screenshot_from_2025-05-29_02-54-03.png
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| Attachment 21: Screenshot_from_2025-05-29_05-00-39.png
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| Attachment 22: Screenshot_from_2025-05-29_05-00-13.png
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| Attachment 23: Screenshot_from_2025-05-29_07-31-25.png
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| Attachment 24: Screenshot_from_2025-05-29_07-30-25.png
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| Attachment 25: Screenshot_from_2025-05-29_07-30-10.png
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| Attachment 26: Screenshot_from_2025-05-29_07-29-42.png
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| Attachment 27: Screenshot_from_2025-05-29_08-41-51.png
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| Attachment 28: Screenshot_from_2025-05-29_10-30-00.png
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| Attachment 29: Screenshot_from_2025-05-29_10-30-03.png
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| Attachment 30: Screenshot_from_2025-05-29_10-30-16.png
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| Attachment 31: Screenshot_from_2025-05-29_10-30-19.png
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| Attachment 32: screenshot-2025-05-29_11-13-385986126969656182153.png
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| Attachment 33: Screenshot_from_2025-05-29_11-38-07.png
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| Attachment 34: Screenshot_from_2025-05-29_11-38-10.png
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| Attachment 35: Screenshot_from_2025-05-29_11-44-55.png
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| Attachment 36: Screenshot_from_2025-05-29_11-44-55.png
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| Attachment 37: Screenshot_from_2025-05-29_14-19-52.png
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699
|
Wed May 28 10:54:14 2025 |
LB | Run 27 | Run 27 running
28/05/2025
(ignore 26 - in-between run)
We start a new run with real data taking condititon: beam is ok, target density is 9.6e11 cm-2, detectors are moving in-out periodically.
Cooler voltage setpoint 1128 V.
Beam energy = 1.99 MeV/u (from HKR) (same as run 25)
Left arm at 18.86 mm
Right arm IN at 83.69 mm (OUT 37.96 mm)
vertical beam position 0.0 mm
horizontal beam position -3.5mm
Beam intensity ~1e+7 particles.
Target density ~9.6e11 at/cm2
Target temperatures: T1=31.5 K T2=35.2 K
Beam cycle set to 10 seconds.
11;57
All checks OK.
Aida10's rates seems low now, but aida07 is instead jumping between 200 and 4000 following beam.
15:45
Root histograms refreshed.
Temps OK - attach
Stats OK - attach
All checks OK
Leakage OK - attach
Base Current Difference
aida01 fault 0x0 : 0x1 : 1
FPGA Timestamp error counter test result: Passed 15, Failed 1
If any of these counts are reported as in error
The ASIC readout system has detected a timeslip.
That is the timestamp read from the time FIFO is not younger than the last
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| Attachment 1: Screenshot_from_2025-05-28_15-45-13.png
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| Attachment 2: Screenshot_from_2025-05-28_15-46-07.png
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| Attachment 3: Screenshot_from_2025-05-28_15-48-27.png
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| Attachment 4: Screenshot_from_2025-05-28_15-48-38.png
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| Attachment 5: Screenshot_from_2025-05-28_15-49-09.png
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698
|
Tue May 27 22:20:11 2025 |
CB, LB,PW | Run 25 - 1.99/2.02 MeV/A | 23:20
JM thinks we cannot see 7Be locus on run 24. Possibly the right arm cannot get close enough.
Stopped moving right arm
Started moving left arm as previously: 32.52 mm -> 77.56 mm
Checked with bunched beam: not clipping. Possibly we could go further in - to be decided.
Started run 25
Target - 1.1E12 atoms/cm2
Beam - 1.2E7 pps
Root histograms refreshed.
Temps OK - attach
Stats OK - attach
All checks OK
Leakage OK - attach
Spectrum browser 1, 7, 8 attached
00:00
Run continues OK
Temps OK, Stats OK, Merger OK
01:15
Run continues OK
Temps OK - attached
Stats OK - attached
Merger OK
Rates OK - attached
Also attached current histograms
03:10
Motors now moving 32.77 -> 77.56 mm. Unclear why, should not affect results.
Target 1.1E12 atoms/cm2
Current 1.4E7 pps
Temps OK - attached
Rates OK - attached
All checks OK
Merger OK
03:37
7Be locus appears to be clearly visible. Attach 18
04:32
Temps OK
Rates OK
Merger OK
05:30
Temps OK
Rates - aida10 showes intermittently high rates around 10k. See attached. Seems to be linked to beam, already observed last night.
06:10
Temps OK
Rates OK - aida10 still counting 10k with beam, 300 without
Merger OK
Histograms attached
7:23- LB,PW
All checks OK, general behaviour consistent with previous observations. Beam current ~ 1E7 pps
8:40
All good, attachment 27 is the spectra. Beam current 1.3E7 pps.
9;50
All good, target very stable at 1E12 at/cm^2. Noticed also Aida01 and aida02 show same behaviour as aida10, but the maximum rate is between 1000-2000 (instead of the 10000-20000 of aida10)
Run 25 stopped 10:45, Run 26 started -> laser spectroscopy laser test |
| Attachment 1: Screenshot_from_2025-05-27_23-21-58.png
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| Attachment 2: Screenshot_from_2025-05-27_23-22-16.png
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| Attachment 3: Screenshot_from_2025-05-27_23-23-12.png
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| Attachment 4: Screenshot_from_2025-05-27_23-23-35.png
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| Attachment 5: Screenshot_from_2025-05-27_23-23-44.png
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| Attachment 6: Screenshot_from_2025-05-27_23-24-18.png
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| Attachment 7: Screenshot_from_2025-05-27_23-24-32.png
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| Attachment 8: Screenshot_from_2025-05-27_23-24-58.png
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| Attachment 9: Screenshot_from_2025-05-28_01-13-04.png
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| Attachment 10: Screenshot_from_2025-05-28_01-13-16.png
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| Attachment 11: Screenshot_from_2025-05-28_01-13-49.png
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| Attachment 12: Screenshot_from_2025-05-28_01-14-01.png
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| Attachment 13: Screenshot_from_2025-05-28_01-14-09.png
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| Attachment 14: Screenshot_from_2025-05-28_01-14-14.png
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| Attachment 15: Screenshot_from_2025-05-28_01-14-20.png
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| Attachment 16: Screenshot_from_2025-05-28_03-09-54.png
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| Attachment 17: Screenshot_from_2025-05-28_03-10-12.png
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| Attachment 18: Screenshot_from_2025-05-28_03-47-08.png
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| Attachment 19: Screenshot_from_2025-05-28_05-30-00.png
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| Attachment 20: Screenshot_from_2025-05-28_05-30-11.png
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| Attachment 21: Screenshot_from_2025-05-28_05-30-20.png
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| Attachment 22: Screenshot_from_2025-05-28_06-09-33.png
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| Attachment 23: Screenshot_from_2025-05-28_06-09-40.png
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| Attachment 24: Screenshot_from_2025-05-28_06-09-43.png
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| Attachment 25: Screenshot_from_2025-05-28_06-09-46.png
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| Attachment 26: Screenshot_from_2025-05-28_06-09-53.png
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| Attachment 27: Screenshot_from_2025-05-28_08-38-27.png
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697
|
Tue May 27 15:18:46 2025 |
JG, CN, JM | run 24 | Run 24 running
27/05/2025
We start a new run with real data taking condititon: beam is ok, target density is 5e11 cm-2, detectors are moving in-out periodically.
Cooler voltage setpoint 1128.55 V.
Beam energy = 1.99 MeV/u (from HKR)
Attachment 1 - beamcalc with set values
Attachment 7 - beamcalc with actual values
Left arm at 18.86 mm
Right arm IN at 83.69 mm (OUT 37.56 mm)
vertical beam position 0.0 mm
horizontal beam position -3.5mm
Beam intensity ~2e+7 particles.
Target density ~5e11 at/cm2
Target temperatures: T1=31.5 K T2=35.1 K
Beam cycle set to 10 seconds.
17:32 all checks OK
17:35 target density jumped to at 9e11
19:30 all checks OK (spectra attached)
19:45 target density drops to 3.5E11
20:20 target density jumps to 7e11
21:30 all checks OK
22:50 all checks OK
|
| Attachment 1: Screenshot_2025-05-27_16-17-15.png
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| Attachment 2: 2025-05-27_16-08-58_YRT1_CRYRING_2025_Li_Marsh.C1.txt
|
# Version: 1.3
# Comment: ParamModi Export at 2025-05-27T16:09:10.333896316+02:00[Europe/Berlin]
# Context: YRT1_CRYRING_2025_Li_Marsh.C1
# Columns: PARAMETERNAME,VALUE,UNIT,BEAMPROCESSPURPOSE
LOGICAL.SOURCE_HV/U,35000.0,V,TRANSFER_INJECTION
YRT1_TO_YRT1LQ1_BEAM/BEAM_MODE_S,NO_BEAM,,TRANSFER_INJECTION
YRT1_TO_YRT1LQ1_BEAM/PARTICLE_SYMBOL_S,7Li,,TRANSFER_INJECTION
YRT1_TO_YRT1LQ1_BEAM/Q_S,1,,TRANSFER_INJECTION
YRT1_TO_YRT1LQ1_TIMEPARAM/TIMING_BI_DELAY_S,2.0E-4,s,TRANSFER_INJECTION
YRT1_TO_YRT1LQ1_TIMEPARAM/TIMING_BI_WINDOW_S,0.002,s,TRANSFER_INJECTION
YRT1_TO_YRT1LQ1_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,BEAMOUT_INIT
YRT1_TO_YRT1LQ1_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,TRANSFER_INJECTION
YRT1_TO_YRT1LQ1_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,STATIC
YRT1_TO_YRT1LQ1_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,STATIC
YRT1_TO_YRT1LQ1_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,STATIC
YRT1_TO_YRT1LQ1_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,STATIC
YRT1_TO_YRT1LQ1_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,STATIC
YRT1_TO_YRT1LQ1_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,STATIC
YRT1_TO_YRT1LQ1_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,STATIC
YRT1_TO_YRT1LQ1_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,STATIC
YRT1_TO_YRT1LQ1_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,STATIC
YRT1_TO_YRT1LQ1_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,BEAMOUT_RESET
YRT1_TO_YRT1LQ1_TIMEPARAM/TIMING_SOURCE_PULSE_LENGTH_S,0.0024,s,TRANSFER_INJECTION
YRT1_TO_YRT1LQ1_TIMEPARAM/T_BP_LENGTH_S,0.12,s,BEAMOUT_INIT
YRT1_TO_YRT1LQ1_TIMEPARAM/T_BP_LENGTH_S,0.11,s,TRANSFER_INJECTION
YRT1_TO_YRT1LQ1_TIMEPARAM/T_BP_LENGTH_S,---,s,STATIC
YRT1_TO_YRT1LQ1_TIMEPARAM/T_BP_LENGTH_S,---,s,STATIC
YRT1_TO_YRT1LQ1_TIMEPARAM/T_BP_LENGTH_S,---,s,STATIC
YRT1_TO_YRT1LQ1_TIMEPARAM/T_BP_LENGTH_S,---,s,STATIC
YRT1_TO_YRT1LQ1_TIMEPARAM/T_BP_LENGTH_S,---,s,STATIC
YRT1_TO_YRT1LQ1_TIMEPARAM/T_BP_LENGTH_S,0.0,s,STATIC
YRT1_TO_YRT1LQ1_TIMEPARAM/T_BP_LENGTH_S,0.0,s,STATIC
YRT1_TO_YRT1LQ1_TIMEPARAM/T_BP_LENGTH_S,0.0,s,STORAGE_MANIP_PERFORM
YRT1_TO_YRT1LQ1_TIMEPARAM/T_BP_LENGTH_S,---,s,STORAGE_MANIP_WAIT
YRT1_TO_YRT1LQ1_TIMEPARAM/T_BP_LENGTH_S,---,s,STORAGE_MANIP_RESTART_FGS
YRT1_TO_YRT1LQ1_TIMEPARAM/T_BP_LENGTH_S,---,s,STATIC
YRT1_TO_YRT1LQ1_TIMEPARAM/T_BP_LENGTH_S,---,s,STATIC
YRT1_TO_YRT1LQ1_TIMEPARAM/T_BP_LENGTH_S,0.12,s,BEAMOUT_RESET
YRT1LQ1_TO_YRT1LC1_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,BEAMOUT_INIT
YRT1LQ1_TO_YRT1LC1_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,TRANSFER_INJECTION
YRT1LQ1_TO_YRT1LC1_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,STATIC
YRT1LQ1_TO_YRT1LC1_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,STATIC
YRT1LQ1_TO_YRT1LC1_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,STATIC
YRT1LQ1_TO_YRT1LC1_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,STATIC
YRT1LQ1_TO_YRT1LC1_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,STATIC
YRT1LQ1_TO_YRT1LC1_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,STATIC
YRT1LQ1_TO_YRT1LC1_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,STATIC
YRT1LQ1_TO_YRT1LC1_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,STATIC
YRT1LQ1_TO_YRT1LC1_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,STATIC
YRT1LQ1_TO_YRT1LC1_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,BEAMOUT_RESET
LOGICAL.YRT1KH1/HKICK,-0.018,rad,TRANSFER_INJECTION
LOGICAL.YRT1KV1/VKICK,0.004,rad,TRANSFER_INJECTION
LOGICAL.YRT1LC1_V/ACTIVE_S,true,,TRANSFER_INJECTION
LOGICAL.YRT1LC1_V/THIGH_S,6.0E-4,s,TRANSFER_INJECTION
LOGICAL.YRT1LC1_V/TOFFSET_S,5.0E-4,s,TRANSFER_INJECTION
LOGICAL.YRT1LC1_V/U,2000.0,V,TRANSFER_INJECTION
LOGICAL.YRT1LD21/ASYMMETRY_KNOB_S,0.0,,TRANSFER_INJECTION
LOGICAL.YRT1LD21/HOR_STEER_KNOB_S,0.0,,TRANSFER_INJECTION
LOGICAL.YRT1LD21/U_QUAD,-640.0,V,TRANSFER_INJECTION
LOGICAL.YRT1LD21/VER_STEER_KNOB_S,-0.03,,TRANSFER_INJECTION
LOGICAL.YRT1LD22/ASYMMETRY_KNOB_S,0.0,,TRANSFER_INJECTION
LOGICAL.YRT1LD22/U_QUAD,650.0,V,TRANSFER_INJECTION
LOGICAL.YRT1LT31/ASYMMETRY_KNOB_S,0.0,,TRANSFER_INJECTION
LOGICAL.YRT1LT31/U_QUAD,515.0,V,TRANSFER_INJECTION
LOGICAL.YRT1LT32/ASYMMETRY_KNOB_S,0.0,,TRANSFER_INJECTION
LOGICAL.YRT1LT32/U_QUAD,-945.0,V,TRANSFER_INJECTION
LOGICAL.YRT1LT33/ASYMMETRY_KNOB_S,0.0,,TRANSFER_INJECTION
LOGICAL.YRT1LT33/U_QUAD,1210.0,V,TRANSFER_INJECTION
LOGICAL.YRT1LT41/ASYMMETRY_KNOB_S,0.0,,TRANSFER_INJECTION
LOGICAL.YRT1LT41/U_QUAD,-2100.0,V,TRANSFER_INJECTION
LOGICAL.YRT1LT42/ASYMMETRY_KNOB_S,0.0,,TRANSFER_INJECTION
LOGICAL.YRT1LT42/U_QUAD,2020.0,V,TRANSFER_INJECTION
LOGICAL.YRT1LT43/ASYMMETRY_KNOB_S,0.0,,TRANSFER_INJECTION
LOGICAL.YRT1LT43/U_QUAD,-2100.0,V,TRANSFER_INJECTION
LOGICAL.YRT1MH1/HKICK,0.022,rad,TRANSFER_INJECTION
LOGICAL.YRT1MH1/K0L_THEO,-1.57079,rad,TRANSFER_INJECTION
YRT1LC1_TO_YRT1MH2_TIMEPARAM/TIMING_BI_DELAY_S,1.0E-6,s,TRANSFER_INJECTION
YRT1LC1_TO_YRT1MH2_TIMEPARAM/TIMING_BI_WINDOW_S,1.0E-6,s,TRANSFER_INJECTION
YRT1LC1_TO_YRT1MH2_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,BEAMOUT_INIT
YRT1LC1_TO_YRT1MH2_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,TRANSFER_INJECTION
YRT1LC1_TO_YRT1MH2_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,STATIC
YRT1LC1_TO_YRT1MH2_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,STATIC
YRT1LC1_TO_YRT1MH2_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,STATIC
YRT1LC1_TO_YRT1MH2_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,STATIC
YRT1LC1_TO_YRT1MH2_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,STATIC
YRT1LC1_TO_YRT1MH2_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,STATIC
YRT1LC1_TO_YRT1MH2_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,STATIC
YRT1LC1_TO_YRT1MH2_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,STATIC
YRT1LC1_TO_YRT1MH2_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,STATIC
YRT1LC1_TO_YRT1MH2_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,BEAMOUT_RESET
YRT1LC1_TO_YRT1MH2_TIMEPARAM/TIMING_RF_LEAD_S,4.0E-4,s,TRANSFER_INJECTION
LOGICAL.YRT1BR1/ACT_ON_BEAM_S,true,,TRANSFER_INJECTION
LOGICAL.YRT1BR1/THIGH_S,0.0025,s,TRANSFER_INJECTION
LOGICAL.YRT1BR1/URF0_S,0.1,V,TRANSFER_INJECTION
LOGICAL.YRT1BR1/U_PAUSE_PULSE_AMPL_S,4.76,V,TRANSFER_INJECTION
LOGICAL.YRT1KH2/HKICK,3.0E-4,rad,TRANSFER_INJECTION
LOGICAL.YRT1KV2/VKICK,-2.0E-4,rad,TRANSFER_INJECTION
LOGICAL.YRT1LD51/ASYMMETRY_KNOB_S,0.0,,TRANSFER_INJECTION
LOGICAL.YRT1LD51/U_QUAD,510.0,V,TRANSFER_INJECTION
LOGICAL.YRT1LD52/ASYMMETRY_KNOB_S,0.0,,TRANSFER_INJECTION
LOGICAL.YRT1LD52/U_QUAD,-420.0,V,TRANSFER_INJECTION
LOGICAL.YRT1QD61/K1L,2.05,1/m,TRANSFER_INJECTION
LOGICAL.YRT1QD62/K1L,-1.68,1/m,TRANSFER_INJECTION
LOGICAL.YRT1QD71/K1L,1.85,1/m,TRANSFER_INJECTION
LOGICAL.YRT1QD72/K1L,-2.1,1/m,TRANSFER_INJECTION
YRT1BR1_TO_YRT1MH2_BEAM/E_S,5000.0,eV/u,TRANSFER_INJECTION
YRT1BR1_TO_YRT1MH2_RF/PHASE_OFFSET_S,0.0,deg,TRANSFER_INJECTION
LOGICAL.GHTYKH4/HKICK,-2.0E-4,rad,TRANSFER_INJECTION
LOGICAL.GHTYKV3/VKICK,-0.002,rad,TRANSFER_INJECTION
LOGICAL.GHTYKV4/VKICK,0.0012,rad,TRANSFER_INJECTION
LOGICAL.GHTYQD41/K1L,1.4,1/m,TRANSFER_INJECTION
LOGICAL.GHTYQD42/K1L,-1.25,1/m,TRANSFER_INJECTION
LOGICAL.YR01LP1I/ESEP_HKICK_S,0.017,rad,TRANSFER_INJECTION
LOGICAL.YR01LP1I/ESEP_K0L_THEO_S,-0.05,rad,TRANSFER_INJECTION
LOGICAL.YR01LP2I/ESEP_HKICK_S,-0.035,rad,TRANSFER_INJECTION
LOGICAL.YR01LP2I/ESEP_K0L_THEO_S,0.055,rad,TRANSFER_INJECTION
LOGICAL.YR01MP1I/HKICK,0.0035,rad,TRANSFER_INJECTION
LOGICAL.YR01MP1I/K0L_THEO,0.29322,rad,TRANSFER_INJECTION
LOGICAL.YRT1MH2/HKICK_ESR_S,-0.61087,rad,TRANSFER_INJECTION
LOGICAL.YRT1MH2/HKICK_LOCAL_S,-0.021,rad,TRANSFER_INJECTION
LOGICAL.YRT1MH2/K0L_THEO,-0.61087,rad,TRANSFER_INJECTION
YRT1MH2_TO_CRYRING_TIMEPARAM/TIMING_BI_DELAY_S,1.0E-6,s,TRANSFER_INJECTION
YRT1MH2_TO_CRYRING_TIMEPARAM/TIMING_BI_WINDOW_S,1.0E-6,s,TRANSFER_INJECTION
YRT1MH2_TO_CRYRING_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,BEAMOUT_INIT
YRT1MH2_TO_CRYRING_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,TRANSFER_INJECTION
YRT1MH2_TO_CRYRING_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,STATIC
YRT1MH2_TO_CRYRING_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,STATIC
YRT1MH2_TO_CRYRING_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,STATIC
YRT1MH2_TO_CRYRING_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,STATIC
YRT1MH2_TO_CRYRING_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,STATIC
YRT1MH2_TO_CRYRING_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,STATIC
YRT1MH2_TO_CRYRING_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,STATIC
YRT1MH2_TO_CRYRING_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,STATIC
YRT1MH2_TO_CRYRING_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,STATIC
YRT1MH2_TO_CRYRING_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,BEAMOUT_RESET
YRT1MH2_TO_CRYRING_TIMEPARAM/TIMING_SEPTUM_TRIGGER_OFFSET_S,0.0,s,TRANSFER_INJECTION
CRYRINGB2B/B2B_SID_EXT_S,---,,RING_INJECTION
CRYRINGB2B/B2B_SOURCE_KICKER_DELAY_S,---,s,RING_INJECTION
CRYRINGB2B/B2B_SOURCE_TRIGGER_OFFSET_S,---,deg,RING_INJECTION
CRYRINGB2B/B2B_TRIGGER_OFFSET_S,0.0,deg,RING_INJECTION
CRYRINGB2B/B2B_TRIGGER_OFFSET_TIME_S,0.0,,RING_INJECTION
CRYRINGBEAM/BEAM_MODE_S,NO_BEAM,,RING_INJECTION
CRYRINGBEAM/BRHO_CHIMNEY_S,---,Tm,BEAMOUT_INIT
CRYRINGBEAM/BRHO_CHIMNEY_S,---,Tm,BEAMOUT_RESET
CRYRINGBEAM/BRHO_DISPLAY_S,0.0713,Tm,RING_INJECTION
CRYRINGBEAM/BRHO_DISPLAY_S,1.0103,Tm,RING_RF_MANIPULATION
CRYRINGBEAM/BRHO_DISPLAY_S,1.4256,Tm,RING_TARGET
CRYRINGBEAM/BRHO_START_END_S,[0.07134952, 0.07134952],Tm,RING_INJECTION
CRYRINGBEAM/BUCKETFILL_RAW_S,[[0.0, 0.0]],,RING_INJECTION
CRYRINGBEAM/BUCKETFILL_RAW_S,[[0.0, 1.4]],,RING_BUNCHING
CRYRINGBEAM/BUCKETFILL_RAW_S,[[1.4, 1.4]],,RING_RAMP
CRYRINGBEAM/BUCKETFILL_RAW_S,[[1.4, 1.4]],,RING_RF_MANIPULATION
CRYRINGBEAM/BUCKETFILL_RAW_S,[[1.4, 1.4]],,RING_RAMP
CRYRINGBEAM/BUCKETFILL_RAW_S,[[1.4, 1.4]],,RING_REBUNCHING
CRYRINGBEAM/BUCKETFILL_RAW_S,[[1.4, 1.4]],,RING_TARGET
CRYRINGBEAM/BUCKETFILL_RAW_S,[[1.4, 1.4]],,RING_INTERMEDIATE
CRYRINGBEAM/BUCKETFILL_SIMPLE_S,1.4,,RING_INJECTION
CRYRINGBEAM/CHIMNEY_B,---,,BEAMOUT_INIT
CRYRINGBEAM/CHIMNEY_B,---,,BEAMOUT_RESET
CRYRINGBEAM/CH_END_S,5.0655,,RING_INJECTION
CRYRINGBEAM/CH_END_S,5.0655,,RING_RAMP
CRYRINGBEAM/CH_END_S,5.0655,,RING_RAMP
CRYRINGBEAM/CH_END_S,---,,STORAGE_MANIP_WAIT
CRYRINGBEAM/COASTING_BEAM_B,false,,RING_REBUNCHING
CRYRINGBEAM/CV_END_S,-5.3921,,RING_INJECTION
CRYRINGBEAM/CV_END_S,-5.3921,,RING_RAMP
CRYRINGBEAM/CV_END_S,-5.3921,,RING_RAMP
CRYRINGBEAM/CV_END_S,---,,STORAGE_MANIP_WAIT
CRYRINGBEAM/DELTAR,5.0E-4,m,RING_INJECTION
CRYRINGBEAM/DELTAR,3.0E-4,m,RING_RF_MANIPULATION
CRYRINGBEAM/DELTAR,0.0,m,STORAGE_MANIP_WAIT
CRYRINGBEAM/DELTAR,0.0,m,RING_TARGET
CRYRINGBEAM/DELTAR,0.0,m,RING_INTERMEDIATE
CRYRINGBEAM/DPBL,0.0,,RING_INJECTION
CRYRINGBEAM/DPBL,0.0,,STORAGE_MANIP_WAIT
CRYRINGBEAM/DPFREV,0.0015,,RING_INJECTION
CRYRINGBEAM/DPFREV,0.002,,RING_RF_MANIPULATION
CRYRINGBEAM/DPFREV,0.013,,STORAGE_MANIP_WAIT
CRYRINGBEAM/DPFREV,0.013,,RING_TARGET
CRYRINGBEAM/DPFREV,0.013,,RING_INTERMEDIATE
CRYRINGBEAM/DP_OVER_P_S,0.004,,RING_INJECTION
CRYRINGBEAM/E_S,4990.0,eV/u,RING_INJECTION
CRYRINGBEAM/E_S,1000000.0,eV/u,RING_RAMP
CRYRINGBEAM/E_S,1990000.0,eV/u,RING_RAMP
CRYRINGBEAM/FINAL_HARMONIC_S,6,,RING_RF_MANIPULATION
CRYRINGBEAM/FREV,18132.5287,Hz,RING_INJECTION
CRYRINGBEAM/FREV,256592.872,Hz,RING_RF_MANIPULATION
CRYRINGBEAM/FREV,364898.6686,Hz,RING_TARGET
CRYRINGBEAM/H_INPUT_S,8,,RING_INJECTION
CRYRINGBEAM/INJ_EMIH_S,1.0E-5,m*rad,RING_INJECTION
CRYRINGBEAM/INJ_EMIL_S,6.160687750547807E-4,eVs/u,RING_INJECTION
CRYRINGBEAM/INJ_EMIV_S,1.0E-5,m*rad,RING_INJECTION
CRYRINGBEAM/KL_AMPL_S,0.0,,RING_INJECTION
CRYRINGBEAM/KL_AMPL_S,0.0,,RING_BUNCHING
CRYRINGBEAM/KL_AMPL_S,0.0,,RING_POST_INJECTION
CRYRINGBEAM/KL_AMPL_S,0.0,,RING_MANI_PRE_RAMP
CRYRINGBEAM/KL_AMPL_S,0.0,,RING_RAMP
CRYRINGBEAM/KL_AMPL_S,0.0,,RING_RF_MANIPULATION
CRYRINGBEAM/KL_AMPL_S,0.0,,RING_RAMP
CRYRINGBEAM/KL_AMPL_S,0.0,,RING_REBUNCHING
CRYRINGBEAM/KL_AMPL_S,0.0,,RING_TARGET
CRYRINGBEAM/KL_AMPL_S,0.0,,RING_INTERMEDIATE
CRYRINGBEAM/KL_HARM_S,1,,RING_INJECTION
CRYRINGBEAM/KL_HARM_S,1,,RING_BUNCHING
CRYRINGBEAM/KL_HARM_S,1,,RING_POST_INJECTION
CRYRINGBEAM/KL_HARM_S,1,,RING_MANI_PRE_RAMP
CRYRINGBEAM/KL_HARM_S,1,,RING_RAMP
CRYRINGBEAM/KL_HARM_S,1,,RING_RF_MANIPULATION
CRYRINGBEAM/KL_HARM_S,1,,RING_RAMP
CRYRINGBEAM/KL_HARM_S,1,,RING_REBUNCHING
CRYRINGBEAM/KL_HARM_S,1,,RING_TARGET
CRYRINGBEAM/KL_HARM_S,1,,RING_INTERMEDIATE
CRYRINGBEAM/KL_OFFSET_S,0.0,,RING_INJECTION
CRYRINGBEAM/KL_OFFSET_S,0.0,,RING_BUNCHING
CRYRINGBEAM/KL_OFFSET_S,0.0,,RING_POST_INJECTION
CRYRINGBEAM/KL_OFFSET_S,0.0,,RING_MANI_PRE_RAMP
CRYRINGBEAM/KL_OFFSET_S,0.0,,RING_RAMP
CRYRINGBEAM/KL_OFFSET_S,0.0,,RING_RF_MANIPULATION
CRYRINGBEAM/KL_OFFSET_S,0.0,,RING_RAMP
CRYRINGBEAM/KL_OFFSET_S,0.0,,RING_REBUNCHING
CRYRINGBEAM/KL_OFFSET_S,0.0,,RING_TARGET
CRYRINGBEAM/KL_OFFSET_S,0.0,,RING_INTERMEDIATE
CRYRINGBEAM/KL_PHASE_S,0.0,deg,RING_INJECTION
CRYRINGBEAM/KL_PHASE_S,0.0,deg,RING_BUNCHING
CRYRINGBEAM/KL_PHASE_S,0.0,deg,RING_POST_INJECTION
CRYRINGBEAM/KL_PHASE_S,0.0,deg,RING_MANI_PRE_RAMP
CRYRINGBEAM/KL_PHASE_S,0.0,deg,RING_RAMP
CRYRINGBEAM/KL_PHASE_S,0.0,deg,RING_RF_MANIPULATION
CRYRINGBEAM/KL_PHASE_S,0.0,deg,RING_RAMP
CRYRINGBEAM/KL_PHASE_S,0.0,deg,RING_REBUNCHING
CRYRINGBEAM/KL_PHASE_S,0.0,deg,RING_TARGET
CRYRINGBEAM/KL_PHASE_S,0.0,deg,RING_INTERMEDIATE
CRYRINGBEAM/NPARTICLES_S,1000.0,,RING_INJECTION
CRYRINGBEAM/PARTICLE_SYMBOL_INPUT_S,7Li,,RING_INJECTION
CRYRINGBEAM/QH_END_S,2.31,,RING_INJECTION
CRYRINGBEAM/QH_END_S,---,,RING_POST_INJECTION
CRYRINGBEAM/QH_END_S,2.29,,RING_RAMP
CRYRINGBEAM/QH_END_S,2.29,,RING_RAMP
CRYRINGBEAM/QH_END_S,---,,STORAGE_MANIP_WAIT
CRYRINGBEAM/QV_END_S,2.55,,RING_INJECTION
CRYRINGBEAM/QV_END_S,---,,RING_POST_INJECTION
CRYRINGBEAM/QV_END_S,2.55,,RING_RAMP
CRYRINGBEAM/QV_END_S,2.55,,RING_RAMP
CRYRINGBEAM/QV_END_S,---,,STORAGE_MANIP_WAIT
CRYRINGBEAM/Q_INPUT_S,1,,RING_INJECTION
CRYRINGBEAM/TREV,5.514951E-5,s,RING_INJECTION
CRYRINGBEAM/USE_SIMPLE_BF_B,true,,RING_INJECTION
CRYRINGBUMPER/TFALL_S,5.0E-4,s,RING_INJECTION
CRYRINGIKICKER/KICKER_TOFFSET1_S,0.0,s,RING_INJECTION
CRYRINGOPTICS/OPTIC_NAME_RING_S,CRYRING_STANDARD_OPTICS_TABLE,,RING_INJECTION
CRYRINGOPTICS/TAU_END_S,0.0,,RING_INJECTION
CRYRINGOPTICS/TAU_END_S,---,,RING_POST_INJECTION
CRYRINGOPTICS/TAU_END_S,0.0,,RING_RAMP
CRYRINGOPTICS/TAU_END_S,0.0,,RING_RAMP
CRYRINGORBIT/COH02,0.0,m,RING_INJECTION
CRYRINGORBIT/COH02,0.0,m,RING_RF_MANIPULATION
CRYRINGORBIT/COH02,0.0,m,STORAGE_MANIP_WAIT
CRYRINGORBIT/COH02,0.0,m,RING_TARGET
CRYRINGORBIT/COH03,0.0,m,RING_INJECTION
CRYRINGORBIT/COH03,0.0,m,RING_RF_MANIPULATION
CRYRINGORBIT/COH03,0.0,m,STORAGE_MANIP_WAIT
CRYRINGORBIT/COH03,0.0,m,RING_TARGET
CRYRINGORBIT/COH04,0.0,m,RING_INJECTION
CRYRINGORBIT/COH04,0.0,m,RING_RF_MANIPULATION
CRYRINGORBIT/COH04,0.0,m,STORAGE_MANIP_WAIT
CRYRINGORBIT/COH04,0.0,m,RING_TARGET
CRYRINGORBIT/COH06,0.0,m,RING_INJECTION
CRYRINGORBIT/COH06,0.0,m,RING_RF_MANIPULATION
CRYRINGORBIT/COH06,0.0,m,STORAGE_MANIP_WAIT
CRYRINGORBIT/COH06,0.0,m,RING_TARGET
CRYRINGORBIT/COH07,0.0,m,RING_INJECTION
CRYRINGORBIT/COH07,0.0,m,RING_RF_MANIPULATION
CRYRINGORBIT/COH07,0.0,m,STORAGE_MANIP_WAIT
CRYRINGORBIT/COH07,0.0,m,RING_TARGET
CRYRINGORBIT/COH08,0.0,m,RING_INJECTION
CRYRINGORBIT/COH08,0.0,m,RING_RF_MANIPULATION
CRYRINGORBIT/COH08,0.0,m,STORAGE_MANIP_WAIT
CRYRINGORBIT/COH08,0.0,m,RING_TARGET
CRYRINGORBIT/COH10,0.0,m,RING_INJECTION
CRYRINGORBIT/COH10,0.0,m,RING_RF_MANIPULATION
CRYRINGORBIT/COH10,0.0,m,STORAGE_MANIP_WAIT
CRYRINGORBIT/COH10,0.0,m,RING_TARGET
CRYRINGORBIT/COH11,0.0,m,RING_INJECTION
CRYRINGORBIT/COH11,0.0,m,RING_RF_MANIPULATION
CRYRINGORBIT/COH11,0.0,m,STORAGE_MANIP_WAIT
CRYRINGORBIT/COH11,0.0,m,RING_TARGET
CRYRINGORBIT/COH12,0.0,m,RING_INJECTION
CRYRINGORBIT/COH12,0.0,m,RING_RF_MANIPULATION
CRYRINGORBIT/COH12,0.0,m,STORAGE_MANIP_WAIT
CRYRINGORBIT/COH12,0.0,m,RING_TARGET
CRYRINGORBIT/COV02,0.0,m,RING_INJECTION
CRYRINGORBIT/COV02,0.0,m,RING_RF_MANIPULATION
CRYRINGORBIT/COV02,0.0,m,STORAGE_MANIP_WAIT
CRYRINGORBIT/COV02,0.0,m,RING_TARGET
CRYRINGORBIT/COV03,0.0,m,RING_INJECTION
CRYRINGORBIT/COV03,0.0,m,RING_RF_MANIPULATION
CRYRINGORBIT/COV03,0.0,m,STORAGE_MANIP_WAIT
CRYRINGORBIT/COV03,0.0,m,RING_TARGET
CRYRINGORBIT/COV04,0.0,m,RING_INJECTION
CRYRINGORBIT/COV04,0.0,m,RING_RF_MANIPULATION
... 679 more lines ...
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| Attachment 7: screenshot-2025-05-29_11-13-385986126969656182153.png
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Tue May 27 12:49:48 2025 |
ML | Ion beam / electron beam settings so far. | Screenshots and ParamModi settings export attached. |
| Attachment 1: 2025-05-27_13-46-30-866.png
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| Attachment 2: 2025-05-27_13-47-04-130.png
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| Attachment 3: 2025-05-27_13-47-23-173.png
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| Attachment 5: 2025-05-27_13-50-26_YRT1_CRYRING_2025_Li_Marsh.C1.txt
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# Version: 1.3
# Comment: ParamModi Export at 2025-05-27T13:50:34.912176166+02:00[Europe/Berlin]
# Context: YRT1_CRYRING_2025_Li_Marsh.C1
# Columns: PARAMETERNAME,VALUE,UNIT,BEAMPROCESSPURPOSE
LOGICAL.SOURCE_HV/U,35000.0,V,TRANSFER_INJECTION
YRT1_TO_YRT1LQ1_BEAM/BEAM_MODE_S,NO_BEAM,,TRANSFER_INJECTION
YRT1_TO_YRT1LQ1_BEAM/PARTICLE_SYMBOL_S,7Li,,TRANSFER_INJECTION
YRT1_TO_YRT1LQ1_BEAM/Q_S,1,,TRANSFER_INJECTION
YRT1_TO_YRT1LQ1_TIMEPARAM/TIMING_BI_DELAY_S,2.0E-4,s,TRANSFER_INJECTION
YRT1_TO_YRT1LQ1_TIMEPARAM/TIMING_BI_WINDOW_S,0.002,s,TRANSFER_INJECTION
YRT1_TO_YRT1LQ1_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,BEAMOUT_INIT
YRT1_TO_YRT1LQ1_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,TRANSFER_INJECTION
YRT1_TO_YRT1LQ1_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,STATIC
YRT1_TO_YRT1LQ1_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,STATIC
YRT1_TO_YRT1LQ1_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,STATIC
YRT1_TO_YRT1LQ1_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,STATIC
YRT1_TO_YRT1LQ1_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,STATIC
YRT1_TO_YRT1LQ1_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,STATIC
YRT1_TO_YRT1LQ1_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,STATIC
YRT1_TO_YRT1LQ1_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,STATIC
YRT1_TO_YRT1LQ1_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,STATIC
YRT1_TO_YRT1LQ1_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,BEAMOUT_RESET
YRT1_TO_YRT1LQ1_TIMEPARAM/TIMING_SOURCE_PULSE_LENGTH_S,0.0024,s,TRANSFER_INJECTION
YRT1_TO_YRT1LQ1_TIMEPARAM/T_BP_LENGTH_S,0.12,s,BEAMOUT_INIT
YRT1_TO_YRT1LQ1_TIMEPARAM/T_BP_LENGTH_S,0.11,s,TRANSFER_INJECTION
YRT1_TO_YRT1LQ1_TIMEPARAM/T_BP_LENGTH_S,---,s,STATIC
YRT1_TO_YRT1LQ1_TIMEPARAM/T_BP_LENGTH_S,---,s,STATIC
YRT1_TO_YRT1LQ1_TIMEPARAM/T_BP_LENGTH_S,---,s,STATIC
YRT1_TO_YRT1LQ1_TIMEPARAM/T_BP_LENGTH_S,---,s,STATIC
YRT1_TO_YRT1LQ1_TIMEPARAM/T_BP_LENGTH_S,---,s,STATIC
YRT1_TO_YRT1LQ1_TIMEPARAM/T_BP_LENGTH_S,0.0,s,STATIC
YRT1_TO_YRT1LQ1_TIMEPARAM/T_BP_LENGTH_S,0.0,s,STATIC
YRT1_TO_YRT1LQ1_TIMEPARAM/T_BP_LENGTH_S,0.0,s,STORAGE_MANIP_PERFORM
YRT1_TO_YRT1LQ1_TIMEPARAM/T_BP_LENGTH_S,---,s,STORAGE_MANIP_WAIT
YRT1_TO_YRT1LQ1_TIMEPARAM/T_BP_LENGTH_S,---,s,STORAGE_MANIP_RESTART_FGS
YRT1_TO_YRT1LQ1_TIMEPARAM/T_BP_LENGTH_S,---,s,STATIC
YRT1_TO_YRT1LQ1_TIMEPARAM/T_BP_LENGTH_S,---,s,STATIC
YRT1_TO_YRT1LQ1_TIMEPARAM/T_BP_LENGTH_S,0.12,s,BEAMOUT_RESET
YRT1LQ1_TO_YRT1LC1_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,BEAMOUT_INIT
YRT1LQ1_TO_YRT1LC1_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,TRANSFER_INJECTION
YRT1LQ1_TO_YRT1LC1_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,STATIC
YRT1LQ1_TO_YRT1LC1_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,STATIC
YRT1LQ1_TO_YRT1LC1_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,STATIC
YRT1LQ1_TO_YRT1LC1_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,STATIC
YRT1LQ1_TO_YRT1LC1_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,STATIC
YRT1LQ1_TO_YRT1LC1_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,STATIC
YRT1LQ1_TO_YRT1LC1_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,STATIC
YRT1LQ1_TO_YRT1LC1_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,STATIC
YRT1LQ1_TO_YRT1LC1_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,STATIC
YRT1LQ1_TO_YRT1LC1_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,BEAMOUT_RESET
LOGICAL.YRT1KH1/HKICK,-0.018,rad,TRANSFER_INJECTION
LOGICAL.YRT1KV1/VKICK,0.004,rad,TRANSFER_INJECTION
LOGICAL.YRT1LC1_V/ACTIVE_S,true,,TRANSFER_INJECTION
LOGICAL.YRT1LC1_V/THIGH_S,6.0E-4,s,TRANSFER_INJECTION
LOGICAL.YRT1LC1_V/TOFFSET_S,5.0E-4,s,TRANSFER_INJECTION
LOGICAL.YRT1LC1_V/U,2000.0,V,TRANSFER_INJECTION
LOGICAL.YRT1LD21/ASYMMETRY_KNOB_S,0.0,,TRANSFER_INJECTION
LOGICAL.YRT1LD21/HOR_STEER_KNOB_S,0.0,,TRANSFER_INJECTION
LOGICAL.YRT1LD21/U_QUAD,-640.0,V,TRANSFER_INJECTION
LOGICAL.YRT1LD21/VER_STEER_KNOB_S,-0.03,,TRANSFER_INJECTION
LOGICAL.YRT1LD22/ASYMMETRY_KNOB_S,0.0,,TRANSFER_INJECTION
LOGICAL.YRT1LD22/U_QUAD,650.0,V,TRANSFER_INJECTION
LOGICAL.YRT1LT31/ASYMMETRY_KNOB_S,0.0,,TRANSFER_INJECTION
LOGICAL.YRT1LT31/U_QUAD,515.0,V,TRANSFER_INJECTION
LOGICAL.YRT1LT32/ASYMMETRY_KNOB_S,0.0,,TRANSFER_INJECTION
LOGICAL.YRT1LT32/U_QUAD,-945.0,V,TRANSFER_INJECTION
LOGICAL.YRT1LT33/ASYMMETRY_KNOB_S,0.0,,TRANSFER_INJECTION
LOGICAL.YRT1LT33/U_QUAD,1210.0,V,TRANSFER_INJECTION
LOGICAL.YRT1LT41/ASYMMETRY_KNOB_S,0.0,,TRANSFER_INJECTION
LOGICAL.YRT1LT41/U_QUAD,-2100.0,V,TRANSFER_INJECTION
LOGICAL.YRT1LT42/ASYMMETRY_KNOB_S,0.0,,TRANSFER_INJECTION
LOGICAL.YRT1LT42/U_QUAD,2020.0,V,TRANSFER_INJECTION
LOGICAL.YRT1LT43/ASYMMETRY_KNOB_S,0.0,,TRANSFER_INJECTION
LOGICAL.YRT1LT43/U_QUAD,-2100.0,V,TRANSFER_INJECTION
LOGICAL.YRT1MH1/HKICK,0.022,rad,TRANSFER_INJECTION
LOGICAL.YRT1MH1/K0L_THEO,-1.57079,rad,TRANSFER_INJECTION
YRT1LC1_TO_YRT1MH2_TIMEPARAM/TIMING_BI_DELAY_S,1.0E-6,s,TRANSFER_INJECTION
YRT1LC1_TO_YRT1MH2_TIMEPARAM/TIMING_BI_WINDOW_S,1.0E-6,s,TRANSFER_INJECTION
YRT1LC1_TO_YRT1MH2_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,BEAMOUT_INIT
YRT1LC1_TO_YRT1MH2_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,TRANSFER_INJECTION
YRT1LC1_TO_YRT1MH2_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,STATIC
YRT1LC1_TO_YRT1MH2_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,STATIC
YRT1LC1_TO_YRT1MH2_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,STATIC
YRT1LC1_TO_YRT1MH2_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,STATIC
YRT1LC1_TO_YRT1MH2_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,STATIC
YRT1LC1_TO_YRT1MH2_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,STATIC
YRT1LC1_TO_YRT1MH2_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,STATIC
YRT1LC1_TO_YRT1MH2_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,STATIC
YRT1LC1_TO_YRT1MH2_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,STATIC
YRT1LC1_TO_YRT1MH2_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,BEAMOUT_RESET
YRT1LC1_TO_YRT1MH2_TIMEPARAM/TIMING_RF_LEAD_S,4.0E-4,s,TRANSFER_INJECTION
LOGICAL.YRT1BR1/ACT_ON_BEAM_S,true,,TRANSFER_INJECTION
LOGICAL.YRT1BR1/THIGH_S,0.0025,s,TRANSFER_INJECTION
LOGICAL.YRT1BR1/URF0_S,0.1,V,TRANSFER_INJECTION
LOGICAL.YRT1BR1/U_PAUSE_PULSE_AMPL_S,4.76,V,TRANSFER_INJECTION
LOGICAL.YRT1KH2/HKICK,3.0E-4,rad,TRANSFER_INJECTION
LOGICAL.YRT1KV2/VKICK,-2.0E-4,rad,TRANSFER_INJECTION
LOGICAL.YRT1LD51/ASYMMETRY_KNOB_S,0.0,,TRANSFER_INJECTION
LOGICAL.YRT1LD51/U_QUAD,510.0,V,TRANSFER_INJECTION
LOGICAL.YRT1LD52/ASYMMETRY_KNOB_S,0.0,,TRANSFER_INJECTION
LOGICAL.YRT1LD52/U_QUAD,-420.0,V,TRANSFER_INJECTION
LOGICAL.YRT1QD61/K1L,2.05,1/m,TRANSFER_INJECTION
LOGICAL.YRT1QD62/K1L,-1.68,1/m,TRANSFER_INJECTION
LOGICAL.YRT1QD71/K1L,1.85,1/m,TRANSFER_INJECTION
LOGICAL.YRT1QD72/K1L,-2.1,1/m,TRANSFER_INJECTION
YRT1BR1_TO_YRT1MH2_BEAM/E_S,5000.0,eV/u,TRANSFER_INJECTION
YRT1BR1_TO_YRT1MH2_RF/PHASE_OFFSET_S,0.0,deg,TRANSFER_INJECTION
LOGICAL.GHTYKH4/HKICK,-5.0E-4,rad,TRANSFER_INJECTION
LOGICAL.GHTYKV3/VKICK,-0.002,rad,TRANSFER_INJECTION
LOGICAL.GHTYKV4/VKICK,0.0015,rad,TRANSFER_INJECTION
LOGICAL.GHTYQD41/K1L,1.4,1/m,TRANSFER_INJECTION
LOGICAL.GHTYQD42/K1L,-1.25,1/m,TRANSFER_INJECTION
LOGICAL.YR01LP1I/ESEP_HKICK_S,0.017,rad,TRANSFER_INJECTION
LOGICAL.YR01LP1I/ESEP_K0L_THEO_S,-0.05,rad,TRANSFER_INJECTION
LOGICAL.YR01LP2I/ESEP_HKICK_S,-0.034,rad,TRANSFER_INJECTION
LOGICAL.YR01LP2I/ESEP_K0L_THEO_S,0.055,rad,TRANSFER_INJECTION
LOGICAL.YR01MP1I/HKICK,0.0035,rad,TRANSFER_INJECTION
LOGICAL.YR01MP1I/K0L_THEO,0.29322,rad,TRANSFER_INJECTION
LOGICAL.YRT1MH2/HKICK_ESR_S,-0.61087,rad,TRANSFER_INJECTION
LOGICAL.YRT1MH2/HKICK_LOCAL_S,-0.021,rad,TRANSFER_INJECTION
LOGICAL.YRT1MH2/K0L_THEO,-0.61087,rad,TRANSFER_INJECTION
YRT1MH2_TO_CRYRING_TIMEPARAM/TIMING_BI_DELAY_S,1.0E-6,s,TRANSFER_INJECTION
YRT1MH2_TO_CRYRING_TIMEPARAM/TIMING_BI_WINDOW_S,1.0E-6,s,TRANSFER_INJECTION
YRT1MH2_TO_CRYRING_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,BEAMOUT_INIT
YRT1MH2_TO_CRYRING_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,TRANSFER_INJECTION
YRT1MH2_TO_CRYRING_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,STATIC
YRT1MH2_TO_CRYRING_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,STATIC
YRT1MH2_TO_CRYRING_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,STATIC
YRT1MH2_TO_CRYRING_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,STATIC
YRT1MH2_TO_CRYRING_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,STATIC
YRT1MH2_TO_CRYRING_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,STATIC
YRT1MH2_TO_CRYRING_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,STATIC
YRT1MH2_TO_CRYRING_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,STATIC
YRT1MH2_TO_CRYRING_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,STATIC
YRT1MH2_TO_CRYRING_TIMEPARAM/TIMING_IS_LENGTH_CHANGED_S,true,,BEAMOUT_RESET
YRT1MH2_TO_CRYRING_TIMEPARAM/TIMING_SEPTUM_TRIGGER_OFFSET_S,0.0,s,TRANSFER_INJECTION
CRYRINGB2B/B2B_SID_EXT_S,---,,RING_INJECTION
CRYRINGB2B/B2B_SOURCE_KICKER_DELAY_S,---,s,RING_INJECTION
CRYRINGB2B/B2B_SOURCE_TRIGGER_OFFSET_S,---,deg,RING_INJECTION
CRYRINGB2B/B2B_TRIGGER_OFFSET_S,0.0,deg,RING_INJECTION
CRYRINGB2B/B2B_TRIGGER_OFFSET_TIME_S,0.0,,RING_INJECTION
CRYRINGBEAM/BEAM_MODE_S,NO_BEAM,,RING_INJECTION
CRYRINGBEAM/BRHO_CHIMNEY_S,---,Tm,BEAMOUT_INIT
CRYRINGBEAM/BRHO_CHIMNEY_S,---,Tm,BEAMOUT_RESET
CRYRINGBEAM/BRHO_DISPLAY_S,0.0713,Tm,RING_INJECTION
CRYRINGBEAM/BRHO_DISPLAY_S,1.0103,Tm,RING_RF_MANIPULATION
CRYRINGBEAM/BRHO_DISPLAY_S,1.4112,Tm,RING_TARGET
CRYRINGBEAM/BRHO_START_END_S,[0.07134952, 0.07134952],Tm,RING_INJECTION
CRYRINGBEAM/BUCKETFILL_RAW_S,[[0.0, 0.0]],,RING_INJECTION
CRYRINGBEAM/BUCKETFILL_RAW_S,[[0.0, 1.4]],,RING_BUNCHING
CRYRINGBEAM/BUCKETFILL_RAW_S,[[1.4, 1.4]],,RING_RAMP
CRYRINGBEAM/BUCKETFILL_RAW_S,[[1.4, 1.4]],,RING_RF_MANIPULATION
CRYRINGBEAM/BUCKETFILL_RAW_S,[[1.4, 1.4]],,RING_RAMP
CRYRINGBEAM/BUCKETFILL_RAW_S,[[1.4, 0.0]],,RING_REBUNCHING
CRYRINGBEAM/BUCKETFILL_RAW_S,[[0.0, 0.0]],,RING_TARGET
CRYRINGBEAM/BUCKETFILL_RAW_S,[[0.0, 0.0]],,RING_INTERMEDIATE
CRYRINGBEAM/BUCKETFILL_SIMPLE_S,1.4,,RING_INJECTION
CRYRINGBEAM/CHIMNEY_B,---,,BEAMOUT_INIT
CRYRINGBEAM/CHIMNEY_B,---,,BEAMOUT_RESET
CRYRINGBEAM/CH_END_S,5.0655,,RING_INJECTION
CRYRINGBEAM/CH_END_S,5.0655,,RING_RAMP
CRYRINGBEAM/CH_END_S,5.0655,,RING_RAMP
CRYRINGBEAM/CH_END_S,---,,STORAGE_MANIP_WAIT
CRYRINGBEAM/COASTING_BEAM_B,true,,RING_REBUNCHING
CRYRINGBEAM/CV_END_S,-5.3921,,RING_INJECTION
CRYRINGBEAM/CV_END_S,-5.3921,,RING_RAMP
CRYRINGBEAM/CV_END_S,-5.3921,,RING_RAMP
CRYRINGBEAM/CV_END_S,---,,STORAGE_MANIP_WAIT
CRYRINGBEAM/DELTAR,5.0E-4,m,RING_INJECTION
CRYRINGBEAM/DELTAR,3.0E-4,m,RING_RF_MANIPULATION
CRYRINGBEAM/DELTAR,0.0,m,STORAGE_MANIP_WAIT
CRYRINGBEAM/DELTAR,0.0,m,RING_TARGET
CRYRINGBEAM/DELTAR,0.0,m,RING_INTERMEDIATE
CRYRINGBEAM/DPBL,0.0,,RING_INJECTION
CRYRINGBEAM/DPBL,0.0,,STORAGE_MANIP_WAIT
CRYRINGBEAM/DPFREV,0.0015,,RING_INJECTION
CRYRINGBEAM/DPFREV,0.002,,RING_RF_MANIPULATION
CRYRINGBEAM/DPFREV,0.013,,STORAGE_MANIP_WAIT
CRYRINGBEAM/DPFREV,0.013,,RING_TARGET
CRYRINGBEAM/DPFREV,0.013,,RING_INTERMEDIATE
CRYRINGBEAM/DP_OVER_P_S,0.004,,RING_INJECTION
CRYRINGBEAM/E_S,4990.0,eV/u,RING_INJECTION
CRYRINGBEAM/E_S,1000000.0,eV/u,RING_RAMP
CRYRINGBEAM/E_S,1950000.0,eV/u,RING_RAMP
CRYRINGBEAM/FINAL_HARMONIC_S,6,,RING_RF_MANIPULATION
CRYRINGBEAM/FREV,18132.5287,Hz,RING_INJECTION
CRYRINGBEAM/FREV,256592.872,Hz,RING_RF_MANIPULATION
CRYRINGBEAM/FREV,361224.731,Hz,RING_TARGET
CRYRINGBEAM/H_INPUT_S,8,,RING_INJECTION
CRYRINGBEAM/INJ_EMIH_S,1.0E-5,m*rad,RING_INJECTION
CRYRINGBEAM/INJ_EMIL_S,6.160687750547807E-4,eVs/u,RING_INJECTION
CRYRINGBEAM/INJ_EMIV_S,1.0E-5,m*rad,RING_INJECTION
CRYRINGBEAM/KL_AMPL_S,0.0,,RING_INJECTION
CRYRINGBEAM/KL_AMPL_S,0.0,,RING_BUNCHING
CRYRINGBEAM/KL_AMPL_S,0.0,,RING_POST_INJECTION
CRYRINGBEAM/KL_AMPL_S,0.0,,RING_MANI_PRE_RAMP
CRYRINGBEAM/KL_AMPL_S,0.0,,RING_RAMP
CRYRINGBEAM/KL_AMPL_S,0.0,,RING_RF_MANIPULATION
CRYRINGBEAM/KL_AMPL_S,0.0,,RING_RAMP
CRYRINGBEAM/KL_AMPL_S,0.0,,RING_REBUNCHING
CRYRINGBEAM/KL_AMPL_S,0.0,,RING_TARGET
CRYRINGBEAM/KL_AMPL_S,0.0,,RING_INTERMEDIATE
CRYRINGBEAM/KL_HARM_S,1,,RING_INJECTION
CRYRINGBEAM/KL_HARM_S,1,,RING_BUNCHING
CRYRINGBEAM/KL_HARM_S,1,,RING_POST_INJECTION
CRYRINGBEAM/KL_HARM_S,1,,RING_MANI_PRE_RAMP
CRYRINGBEAM/KL_HARM_S,1,,RING_RAMP
CRYRINGBEAM/KL_HARM_S,1,,RING_RF_MANIPULATION
CRYRINGBEAM/KL_HARM_S,1,,RING_RAMP
CRYRINGBEAM/KL_HARM_S,1,,RING_REBUNCHING
CRYRINGBEAM/KL_HARM_S,1,,RING_TARGET
CRYRINGBEAM/KL_HARM_S,1,,RING_INTERMEDIATE
CRYRINGBEAM/KL_OFFSET_S,0.0,,RING_INJECTION
CRYRINGBEAM/KL_OFFSET_S,0.0,,RING_BUNCHING
CRYRINGBEAM/KL_OFFSET_S,0.0,,RING_POST_INJECTION
CRYRINGBEAM/KL_OFFSET_S,0.0,,RING_MANI_PRE_RAMP
CRYRINGBEAM/KL_OFFSET_S,0.0,,RING_RAMP
CRYRINGBEAM/KL_OFFSET_S,0.0,,RING_RF_MANIPULATION
CRYRINGBEAM/KL_OFFSET_S,0.0,,RING_RAMP
CRYRINGBEAM/KL_OFFSET_S,0.0,,RING_REBUNCHING
CRYRINGBEAM/KL_OFFSET_S,0.0,,RING_TARGET
CRYRINGBEAM/KL_OFFSET_S,0.0,,RING_INTERMEDIATE
CRYRINGBEAM/KL_PHASE_S,0.0,deg,RING_INJECTION
CRYRINGBEAM/KL_PHASE_S,0.0,deg,RING_BUNCHING
CRYRINGBEAM/KL_PHASE_S,0.0,deg,RING_POST_INJECTION
CRYRINGBEAM/KL_PHASE_S,0.0,deg,RING_MANI_PRE_RAMP
CRYRINGBEAM/KL_PHASE_S,0.0,deg,RING_RAMP
CRYRINGBEAM/KL_PHASE_S,0.0,deg,RING_RF_MANIPULATION
CRYRINGBEAM/KL_PHASE_S,0.0,deg,RING_RAMP
CRYRINGBEAM/KL_PHASE_S,0.0,deg,RING_REBUNCHING
CRYRINGBEAM/KL_PHASE_S,0.0,deg,RING_TARGET
CRYRINGBEAM/KL_PHASE_S,0.0,deg,RING_INTERMEDIATE
CRYRINGBEAM/NPARTICLES_S,1000.0,,RING_INJECTION
CRYRINGBEAM/PARTICLE_SYMBOL_INPUT_S,7Li,,RING_INJECTION
CRYRINGBEAM/QH_END_S,2.31,,RING_INJECTION
CRYRINGBEAM/QH_END_S,---,,RING_POST_INJECTION
CRYRINGBEAM/QH_END_S,2.3,,RING_RAMP
CRYRINGBEAM/QH_END_S,2.3,,RING_RAMP
CRYRINGBEAM/QH_END_S,---,,STORAGE_MANIP_WAIT
CRYRINGBEAM/QV_END_S,2.55,,RING_INJECTION
CRYRINGBEAM/QV_END_S,---,,RING_POST_INJECTION
CRYRINGBEAM/QV_END_S,2.55,,RING_RAMP
CRYRINGBEAM/QV_END_S,2.55,,RING_RAMP
CRYRINGBEAM/QV_END_S,---,,STORAGE_MANIP_WAIT
CRYRINGBEAM/Q_INPUT_S,1,,RING_INJECTION
CRYRINGBEAM/TREV,5.514951E-5,s,RING_INJECTION
CRYRINGBEAM/USE_SIMPLE_BF_B,true,,RING_INJECTION
CRYRINGBUMPER/TFALL_S,5.0E-4,s,RING_INJECTION
CRYRINGIKICKER/KICKER_TOFFSET1_S,0.0,s,RING_INJECTION
CRYRINGOPTICS/OPTIC_NAME_RING_S,CRYRING_STANDARD_OPTICS_TABLE,,RING_INJECTION
CRYRINGOPTICS/TAU_END_S,0.0,,RING_INJECTION
CRYRINGOPTICS/TAU_END_S,---,,RING_POST_INJECTION
CRYRINGOPTICS/TAU_END_S,0.0,,RING_RAMP
CRYRINGOPTICS/TAU_END_S,0.0,,RING_RAMP
CRYRINGORBIT/COH02,0.0,m,RING_INJECTION
CRYRINGORBIT/COH02,0.0,m,RING_RF_MANIPULATION
CRYRINGORBIT/COH02,0.0,m,STORAGE_MANIP_WAIT
CRYRINGORBIT/COH02,0.0,m,RING_TARGET
CRYRINGORBIT/COH03,0.0,m,RING_INJECTION
CRYRINGORBIT/COH03,0.0,m,RING_RF_MANIPULATION
CRYRINGORBIT/COH03,0.0,m,STORAGE_MANIP_WAIT
CRYRINGORBIT/COH03,0.0,m,RING_TARGET
CRYRINGORBIT/COH04,0.0,m,RING_INJECTION
CRYRINGORBIT/COH04,0.0,m,RING_RF_MANIPULATION
CRYRINGORBIT/COH04,0.0,m,STORAGE_MANIP_WAIT
CRYRINGORBIT/COH04,0.0,m,RING_TARGET
CRYRINGORBIT/COH06,0.0,m,RING_INJECTION
CRYRINGORBIT/COH06,0.0,m,RING_RF_MANIPULATION
CRYRINGORBIT/COH06,0.0,m,STORAGE_MANIP_WAIT
CRYRINGORBIT/COH06,0.0,m,RING_TARGET
CRYRINGORBIT/COH07,0.0,m,RING_INJECTION
CRYRINGORBIT/COH07,0.0,m,RING_RF_MANIPULATION
CRYRINGORBIT/COH07,0.0,m,STORAGE_MANIP_WAIT
CRYRINGORBIT/COH07,0.0,m,RING_TARGET
CRYRINGORBIT/COH08,0.0,m,RING_INJECTION
CRYRINGORBIT/COH08,0.0,m,RING_RF_MANIPULATION
CRYRINGORBIT/COH08,0.0,m,STORAGE_MANIP_WAIT
CRYRINGORBIT/COH08,0.0,m,RING_TARGET
CRYRINGORBIT/COH10,0.0,m,RING_INJECTION
CRYRINGORBIT/COH10,0.0,m,RING_RF_MANIPULATION
CRYRINGORBIT/COH10,0.0,m,STORAGE_MANIP_WAIT
CRYRINGORBIT/COH10,0.0,m,RING_TARGET
CRYRINGORBIT/COH11,0.0,m,RING_INJECTION
CRYRINGORBIT/COH11,0.0,m,RING_RF_MANIPULATION
CRYRINGORBIT/COH11,0.0,m,STORAGE_MANIP_WAIT
CRYRINGORBIT/COH11,0.0,m,RING_TARGET
CRYRINGORBIT/COH12,0.0,m,RING_INJECTION
CRYRINGORBIT/COH12,0.0,m,RING_RF_MANIPULATION
CRYRINGORBIT/COH12,0.0,m,STORAGE_MANIP_WAIT
CRYRINGORBIT/COH12,0.0,m,RING_TARGET
CRYRINGORBIT/COV02,0.0,m,RING_INJECTION
CRYRINGORBIT/COV02,0.0,m,RING_RF_MANIPULATION
CRYRINGORBIT/COV02,0.0,m,STORAGE_MANIP_WAIT
CRYRINGORBIT/COV02,0.0,m,RING_TARGET
CRYRINGORBIT/COV03,0.0,m,RING_INJECTION
CRYRINGORBIT/COV03,0.0,m,RING_RF_MANIPULATION
CRYRINGORBIT/COV03,0.0,m,STORAGE_MANIP_WAIT
CRYRINGORBIT/COV03,0.0,m,RING_TARGET
CRYRINGORBIT/COV04,0.0,m,RING_INJECTION
CRYRINGORBIT/COV04,0.0,m,RING_RF_MANIPULATION
... 679 more lines ...
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695
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Tue May 27 08:38:29 2025 |
TD | [How To] Recover DAQ when one FEE64 stops sending data - short(er) version | 1) Select 'No Storage' [workspace 4, display 1, browser tab 'TapeServer']
If already in 'No Storage' mode please ignore this step
2) STOP DAQ [workspace 3, display 1, browser tab 'Run Control']
all FEE64s should change status from 'going' to 'stopped' *except* whichever FEE64(s) have a problem - typically their status is 'going' or 'error'
3) Restart Merger by selecting the Merger icon [workspace 4, display 2]
terminal window showing the startup will popup
4) Setup Merger by selecting 'SETUP' [workspace 4, display 1, browser tab 'NewMerger Control']
5) Start Merger by selecting 'GO' [workspace 4, display 1, browser tab 'NewMerger Control']
all data links will be inactive (red)
6) Start DAQ by selecting 'GO' [workspace 3, display 1, browser tab 'Run Control']
check that DAQ is *actually* going - if not repeat 'GO'
7) Check data is being transferred to Merger and TapeServer
Select 'Reload' [workspace 4, display 1, browser tab 'NewMerger Control']
you should see a non-zero 'current merged data rate' and all links should show as green at least some of the time (requires observation over several reloads)
Select 'Reload' [workspace 4, display 1, browser tab 'TapeServer']
you should see 'Blocks written' and 'kb written' counters increase
8) Unselect 'No Storage' [workspace 3, display 1, browser tab 'TapeServer']
If already in 'No Storage' mode at the start of this procedure please ignore this step
If you continue to have problems, please request expert assistance. |
|
694
|
Tue May 27 05:24:05 2025 |
LB,SN, L. Cs. P. J. W. | Run 22, 23 - 1.95 MeV/A | 27/05/2025 ca. 6:00
We start a new run: beam is ok, target density ok, detectors are moving in-out periodically.
Cooler voltage setpoint 1105.7 V
Attachment 8 - beamcalc with actual values
Next entry - beamcalc with set values
Right arm at 19.80 mm
Left arm IN at 77.56 mm (OUT 32.53 mm)
vertical beam position 0.0 mm
horizontal beam position -3.5mm
Beam intensity 1.7e+7 particles.
Target density ~6e11 at/cm2
Target temperatures: T1=31.5 K T2=35.2 K
Beam cycle set to 10 seconds.
All check are Ok!
6:30
Noticed a small spike in all leakage currents, see attachment 1
6:50
all checks ok!
07:40
All checks are Ok!
Aida 10 shows sometimes higher statistics.
09:02
All checks are Ok!
Aida 10 shows sometimes higher statistics.
10:00
Checks OK.
Compression works OK.
Moved to run 23. Now moving RIGHT hand side detectors instead of LEFT hand side.
Motion 37.96 mm -> 83.69 mm
Left arm stationary at 18.86 mm
Planning to change energy around lunch.
11:35
Parameters are OK! Tragte density dropped down a bit: ~6e11 at/cm2
12:35
Parameters are OK! Tragte density dropped down a bit: ~1e12 at/cm2
13:10
Starting beam energy change. Detectors OUT. |
| Attachment 1: Screenshot_from_2025-05-27_06-31-48.png
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| Attachment 2: Screenshot_from_2025-05-27_07-40-10.png
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| Attachment 3: Screenshot_from_2025-05-27_07-40-21.png
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| Attachment 4: Screenshot_from_2025-05-27_09-22-51.png
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| Attachment 5: Screenshot_from_2025-05-27_09-23-06.png
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| Attachment 6: Screenshot_from_2025-05-27_11-34-21.png
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| Attachment 7: Screenshot_from_2025-05-27_11-34-36.png
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| Attachment 8: screenshot-2025-05-29_11-30-30730985236495866200.png
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693
|
Tue May 27 05:03:41 2025 |
JM | DAQ restart | 06:00
FEE modules power cycled.
No issues on power cycle restart.
All system check OK - clock status, ADC calibration etc.
ASIC settings loaded are the same as previous startup. Slow comparator thresholds 0x32 (500 keV) and all FEEs set to LEC.
Statistics (ADC data) - attachment 1. Note aida10 fluctuations between 10,000 and 300 which appears to be a physics effect (beam on target)
Spectrum browser - layout 1 - attachment 2
Merger - attachment 3
Tape server - attachment 4 Data rate is about 300 kB/sec.
FEE temperatures OK
Waveforms - attachments 4,5
All Lekagae currents appear normal
Online monitoring scropt started. Beam on target. Run 22 started. See nect elog for details. |
| Attachment 1: Screenshot_from_2025-05-27_06-09-45.png
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| Attachment 2: Screenshot_from_2025-05-27_06-10-13.png
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| Attachment 3: Screenshot_from_2025-05-27_06-10-29.png
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| Attachment 4: Screenshot_from_2025-05-27_06-11-22.png
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| Attachment 5: Screenshot_from_2025-05-27_06-13-59.png
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| Attachment 6: Screenshot_from_2025-05-27_06-14-43.png
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| Attachment 7: Screenshot_from_2025-05-27_06-16-04.png
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692
|
Mon May 26 18:37:17 2025 |
LC, AG, LB, SN | Run 21 | Run 21 running
26/05/2025 19:42 p.m.
We start a new run with real data taking condititon: beam is ok, target density is 1.1e12 cm-2, detectors are moving in-out periodically.
Cooler voltage setpoint 1105.7 V.
Beam energy = 1.95 MeV/u
Right arm at 19.80 mm
Left arm IN at 77.56 mm (OUT 32.53 mm)
vertical beam position 0.0 mm
horizontal beam position -3.5mm
Beam intensity 2.2e+7 particles.
Target density ~1.1e12 at/cm2
Target temperatures: T1=31.5 K T2=35.2 K
Beam cycle set to 10 seconds.
All check are Ok!
21:44
All check are Ok!
23:10
Data rate to disk ~300 kB/sec
All checks OK
ADC disk Items #6 and ADC data items screenshots - attachments 5 and 6
Target density has dropped slightly to 7e11 at/cm2. This is fine with lithium due to beam lifetime constraints.
00:43
All checks OK
01:52
All checks are OK,
Attached spectra (attachment 7 and 8).
target pressure seems to be back at ca. 1E12 at/cm2
3:27
All checks good.
target pressure went down to 5E11 at/cm2 for a while, then back up to ca. 9E11 at/cm2.
4:49
All checks good
Rates higher on aida10 and aida4 (see attachment 9), monitoring. It is not consistently high but for example aida10 goes 222->20000->300->11000. It seems to follow the detector movement (higher rates when detector are IN)
Data rate to disk ~370kB/s.
Spectra attached in 10-11.
5:11
Still flickering. Attachment 12 with rates.
Data rate to disk around ~400 kB/s
05:30
DAQ has crashed. All statistics on aida read zero. No data through the merger or tape server.
Stopped tape server and then Run control STOP. Most FEEs did not respond to the command and continued to read going and some undefined. Reset aida servers and reloaded webpages. Same status. Have to power cycle. |
| Attachment 1: Screenshot_from_2025-05-26_19-41-13.png
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| Attachment 2: Screenshot_from_2025-05-26_19-41-25.png
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| Attachment 3: Screenshot_from_2025-05-26_21-43-59.png
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| Attachment 4: Screenshot_from_2025-05-26_21-44-11.png
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| Attachment 5: Screenshot_from_2025-05-26_23-13-16.png
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| Attachment 6: Screenshot_from_2025-05-26_23-13-33.png
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| Attachment 7: Screenshot_from_2025-05-27_01-50-56.png
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| Attachment 8: Screenshot_from_2025-05-27_01-50-39.png
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| Attachment 9: Screenshot_from_2025-05-27_04-45-35.png
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| Attachment 10: Screenshot_from_2025-05-27_04-57-15.png
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| Attachment 11: Screenshot_from_2025-05-27_04-57-00.png
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| Attachment 12: Screenshot_from_2025-05-27_05-10-36.png
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691
|
Mon May 26 08:56:56 2025 |
EM,LB | Run20 | Run 20 running
We start a new run since the laser guys will do some measurements.
Zoran will increase the beam intensity
Detectors are out position
All checks are OK!
13:30
All checks are ok! |
| Attachment 1: Screenshot_from_2025-05-26_10-01-01.png
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| Attachment 2: Screenshot_from_2025-05-26_10-01-19.png
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| Attachment 3: Screenshot_from_2025-05-26_10-07-05.png
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| Attachment 4: Screenshot_from_2025-05-26_13-32-57.png
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| Attachment 5: Screenshot_from_2025-05-26_13-33-49.png
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| Attachment 6: Screenshot_from_2025-05-26_13-34-12.png
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| Attachment 7: Screenshot_from_2025-05-26_13-34-50.png
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| Attachment 8: Screenshot_from_2025-05-26_13-35-19.png
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690
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Sat May 24 18:27:55 2025 |
EM, LC | Background runs continued R17-R19 | Summary: Target not running. Background runs written to disk, some with beam some without.
19:27 Data file R17 running
DSSSD positions out. Nikos will work on the target.
Started a new run just after changing the DSSSD position
No storage enabled
All the checks are ok!
At 20:30 after 2h there was possible to open the cave again and Nikos started to cool down the target. However, is not clear if they can close the ring again...
22:12 The beam is back again. Cave closed and we are cooling downg the target!
Data file R18 started now.
DSSSD positions out.
No storage disabled.
All checks ok. See attached files Work on the target.
Sunday 25 May 2025
09:45 Data file R18 running
DSSSD positions out.
All checks ok!
12:05 Data file R18 running
DSSSD positions out.
All checks ok!
13:55 Data file R18 running
DSSSD positions out.
All checks ok!
15:50 Data file R19 running
DSSSD positions out.
Beam is off.
All checks ok!
21:50
All checks OK.
Monday 26.05.25 09:15
All checks OK. |
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689
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Sat May 24 08:28:14 2025 |
TD, EM | Background runs R13-R16 | Summary: Target not running. Some background files written to disk, some with beam some without.
09.27 DAQ going
Switch from 'no storage' mode - alpha background
Data file R13
All histograms & stats zero'd
ASIC settings 2025Apr08-13.45.30
slow comparator 0x32
Pulser ON
DSSSD bias & leakage currents OK - attachment 1-2
FEE64 temps OK - attachment 3
ADC data item stats - attachment 4
per FEE64 Rate spectra - attachment 5
WR timestamp OK - attachment 6
System wide checks OK *except* WR decoder/FPGA error - attachments 7-8
Merger & TapeServer - attachment 9-10
CRYRING vacuum & temperature - attachment 11-12
10.07 Laser group have completed their work in the CRYRING area - will now request 7Li beam
Tape Server to 'no storage' mode
10.45 Beam 7Li1+ c. 1e6
Switch from 'no storage' mode - alpha background
Data file R14
All histograms & stats zero'd; online analysis restarted
11.35 per FEE64 1.8.L spectra - attachments 13-14
pulser peak width aida03 78 ch FWHM, aida11 63 ch FWHM
per FEE64 1.8.W spectra - 20us FSR - attachments 15-18
12.55 DSSSD bias & leakage currents OK - attachment 19-20
FEE64 temps OK - attachment 21
ADC data item stats - attachment 22
14.33 Switch Tape Server from 'no storage' mode
Data file R15
DSSSD positions Left 36.54mm, Right 64.60mm
16:22 Data file R15 still running
DSSSD positions unchanged (Left 36.54mm, Right 64.60mm)
All the checks are ok!
18:30 Data file R16 running
DSSSD positions out. Nikos will work on the target.
Started a new run just after changing the DSSSD position
All the checks are ok! |
| Attachment 1: Screenshot_from_2025-05-24_09-30-00.png
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688
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Fri May 23 09:19:40 2025 |
SN, TD | Target wait, switch lithium oven |
10.12 DAQ, Merger & Tape Server running OK - no storage mode
DSSSD bias leakage current OK - attachments 9-10
CRYRING vacuum & temperature - attachments 11-12
FEE64 temps OK - attachment 8
ADC & DISC data item stats OK - attachments 6-7
per FEE64 Rate spectra - attachments 1 & 5
before and after check ASIC load
WR timestamps OK - attachment 4
System wide checks OK *except* FPGA & WR status - attachments 2-3
10.33 All histograms & stats zero'd
Online analysis restarted
13:56 Checks on temperature status, statistics status and power supply : OK
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687
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Thu May 22 06:41:10 2025 |
JG, TD | R6 - R11 scrapers test / pulser walk | 07.00
JG found target off (target data stopped c. 02.30 this morning) and beam off (not re-enabled from previous CRYRNG area entry - target related?) JG re-enables beam
07.37
Run R5 stopped Run R6 started - switch to no storage mode
07.44
DSSSD bias and leakage currents - attachments 1
FEE64 Rate spectra OK - attachment 2
ADC data item stats OK - attachment 3
FEE64 temps OK - attachment 4
WR timestamps OK - attachment 5
Merger and Tape Server - attachments 6
DSSSD x-y hit patterns - attachment 8
Per JM instructions will move detectors toward beam axis by 30mm and investigate effect of e-target scrapers
08.45
Run R7 JG has setup e-target scrapers (YR09DS1HA and YR09DS1HI) both scrapers are set to move with the beam cycle. They move in with the start of the 'target' period
(SC3). They move out with the start of the 'intermediate' period (SC4). The movement is rather slow (~1sec) so there is still some unblocked time during 'target' period.
The positions are YR09DS1HA (outside): 10mm (SC3) and 30mm (SC4) YR09DS1HI (inside): -0.5mm (SC3) and -20mm (SC4)
11:50
Jan has been playing with the scraper settings so that we can take a run with the scrapers and without.
Since he has been playing. We see the beam halo. This is when scrapers were in and beam was moved to the inside of the ring by 5mm. See attachment 10
Moving the beam to the putside of the ring by 5mm we see halo on the left now. See attachment 11
We believe this is scattering from the edge of the scrapers. See attachment 12 for the energy spectrum which corresponds to attachment 11. It is consistent with
scattering.
We will now take a run with and without the scrapers in and with the left detector moving in with every cycle via the pneumatic motor.
12:20
R8 started. Scrapers in. Left arm moving in synchronous with the ring cycle, potentiometer when IN = 62.71 mm. Right arm stationary and OUT, potentiometer = 19.8 mm
13:00
Run 9 started. Same condition as run 8 except no scrapers.
13:35
Run 9 stopped, R10 started -> no storage
13.37 Merger - attachment 13
per FEE64 n+n Ohmic 1.8.W spectra - 20us, 200us, 2ms, 20ms FSR - attachments 14-18
per FEE64 p+n junction 1.8.W spectra - 20ms, 2ms, 200us, 20us FSR - attachments 19-22
per FEE64 Rate spectra - attachment 23
WR timestamp OK - attachment 24
ADC, DISC, PAUSE RESUME data item stats - attachment 25-28
FEE64 temps OK - attachment 29
DSSSD bias & leakage current OK - attachment 30
14:00
R11 Pulser walkthrough
See attachments 31-32
Following pulser walkthrough R12 started with no beam and no target in the ring. Cave is accessible while we switch to 7Li
20:15
System checks OK |
| Attachment 1: Screenshot_from_2025-05-22_07-44-10.png
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686
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Wed May 21 14:38:22 2025 |
JM, TD | R4 and R5 - background | 15:30
Waiting for the target to cool down. ETA is 16:30 for cooling to be finished and then we need to try and make target.
While waiting we havve been running a background (R3). I noticed the rates on aida10 had increased (300k) and aida09 were slowlly creeping up too. Check load and shaking the detectors did not work. These FEEs correspond to the high leakage current detectors and showed similar rates to aida03 and aida04 which were turned to MEC.
Tried some tests. Lowered bias voltage to 50V. Rates increased on aida09 and aida10. Increased voltage to 110V and rates dropped to approx zero. Checked 105V and we get the same effect as at 110V.
Then decided to try to increase the bias on DSSD1 as well. 110V no ffect but at 115V we see the rates drop to zero.
Data rates of ~300 kB/sec writing to disk.
Some increases in rates on aida12 have also been noticed. We have turned the fast discrimtor off for this FEE which has resolved the issue. We should keep an eye on the rates as we hope this is stable but may not be.
Attachment 1 - current ADC data items rate with new settings. (still 0x32 slow comparator, all channels LEC)
Attachment 2 - aida12 discriminator settings.
Attachment 3 - current bias/leakage current values.
Started R4 - background we expect beam in the ring soon.
16:00
Beam is in the ring - we see the beam stripe on DSSD1
No change on data rate writing to disk or in ADC statistics rate.
Motors fully out. Left potentiometer = 18.86 mm, Right potentiometer = 19.80 mm
Beam energy = 2 MeV/u - 6Li1+
Cycle time is 25 seconds
Attachment 4 - CARME detectors xy plot
Attachment 5 - Total energy histograms (Ex)
17:56
Nikos requires access to the cave so beam is stopped and background run is going.
R5 started. Same settings as previous run.
21:45
All system checks OK - except white rabbit decoder and FPGA timestamps see attachments 6,7
Data rate had gone high again ~2 MB/sec. No difference on ADC data items. Large increase on aida06 for aida disc info #6.
Checked hit rate for aida06 and see ASIC 2 was misbehaving. ASIC check load on asic 2 -> problem sorted. This is not first time this has happened. We should keep an eye on the data rate. |
| Attachment 1: Screenshot_from_2025-05-21_15-43-32.png
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685
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Tue May 20 19:38:36 2025 |
JM | CARME restart | 19:00
Arrived at GSI.
We have 6Li1+ beam in the ring at 2 MeV/u. Injection is about 2.5e7 pps and lifetime with no target is about 40 seconds. We have injection every 25 seconds.
DSSD bias situation remains unchanged from previous elogs. See attachment 1.
AIDA started - all looks OK. All FEE temps OK - coolant pipe must still be fine.
Set aida03 and aida04 to MEC (0x1) and slow comparator thresholds for all FEEs to 0x32 (500 keV).
Attachment 2 shows ADC data items rate for 1 MeV threshold. Attachment 3 shows the same but at 500 keV threshold with aida03 and aida04 set to MEC.
DAQ go rates look OK.
Setting up tape server and merger. I notice a strange occurance. NetVar options is set to 3 on loading. I set this equal to 1 so we can write to disk.... but this turns off the enable output to data storage off on the merger. By enabling output to data storage again the neVar options variable returns to 3 and we cannot write data to disk. I have tried reloading the servers for the merger/tape server and rebooting the FEEs -> still have this issue. It is pretty late so have turned FEEs off but left DSSDs biased at 100V.
Note the proxy is back up
09:45
Started up AIDA DAQ.
Started merger and tape server as yesterday. Today I have had no issues (same procedure was used last night?!). We are currently writing data to disk G22-205/R1
All FEEs set to 0x32 thresholds, with aida03 and aida04 set to MEC.
All sytem checks OK - no faults.
Temps OK
Merger running between 100k and 400k. Tape server writing ~300 kb/sec to disk.
Beam is ON. 6Li1+ at 2 MeV/u. Gleb is currently running machine tests.
Motors are not homed yet, waiting until beam is off and access to the cave to double check pins are out, Potentiometers read left=21.45mm and right=19.8mm
Attachment 4 - ADC data rates
Attachment 5 - Merger
Attachment 6 - Tape server
11:00
Safety meeting , beam off and access to the cave
Pins removed from motors and compressed air on. Motors homed.
Started background run (no beam) R3
13:30
We are now waiing for the target before we can begin tests today.
ASIC settings checked. We are using APR2025 settings. Only chnages made are aida03 and aida04 to MEC and slow comparator threshold lowered to 500 keV (0x32)
Fast comparator threshold is 0xff
14:00
Motors movement tested with signals from CRYRING. Dummy test signals sent through number 16 on the control room to CRYRING touch panel. This sent an injection signal followed by a dump signal 5 seconds later. Motors moved according to this pattern.
Command used on CARME motors code for future reference
l t in
l p in
l t out
l p out
l r 20 |
| Attachment 1: Screenshot_from_2025-05-20_20-04-13.png
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684
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Sat May 17 11:19:06 2025 |
JM | Shifter intructions 2025 | EMERGENCY SHUTDOWNS
1. CARME motors: Q key on keyboard while on workspace 1 of appc218 (right of this double-monitor setup)
2. Internal target:
ELOG
The shift should put all information relating to the current run in ONE elog entry. If a significant change occurs during the shift i.e beam off, target off, run change, detectors out etc, start a new run and add a new elog entry.
Elog entry should be named by the current run number.
At the start of each new elog entry please state current detector positions, beam energy and run type (e.g. beam on target, background etc).
TO DO FOR THE SHIFTERS - CHECK EVERY HOUR AND POST TO ELOG WITH SCREENSHOTS. ELOG should be updated with current beam energy, injection beam intensity, system checks OK/not, FEE temperature OK/not, Statistics OK/not, Merger OK/not, tape server data rate, Motors OK/not and min/max motors potentiometer value. The time of each update should be noted in the elog. Screenshots of important screens (detailed below) should also be uploaded to the elog regularly (not required every hour).
CARME DAQ
CARME computer has 6 workspaces (WS), two monitors for each WS.
WS1 : left monitor - fee power
right monitor - Detector Bias control, fee power server (just a terminal, do not close). Check detector bias is stable. If any detector current levels become unstable contact Jordan or Carlo and note time in the elog.
WS2 : left monitor - DAQ controls
right monitor - DAQ server (just a terminal, do not close)
Most important tabs (DAQ controls)
- Run control : shows daq status, stopped / going
- Fee temperatures : temperatures of fees labelled aida01, aida02, aida03, aida04, aida05, aida06, aida07, aida08, aida09, aida10, aida11, aida12, aida13, aida14, aida15, aida16. Hit reload, temperatures will update and should all be green. 1-2 C above safe limit (top) is OK. More than that - warn expert shifter immediately.
- Statistics : shows the statistics for each fee. Make sure ADC Data Items is selected in the left hand menu. Hit update all (SCREENSHOT once, if no changes record OK in elog)
- System wide checks : checks for the setup. Click on 'Check Clock Status', 'Check ADC Calibration' and 'Check the White rabbit decoder status' to run checks. (SCREENSHOT once, if no changes record OK in elog)
- Spectrum browser : loads histograms for fees and fee channels from preset layouts. select layout from 'layout ID' then restore layout from 'Arrange functions' drop down menu. Check layout 1, Select log scale and change xmax as 128 . This displays the data rate per strip. If any strips are a lot higher than the others, or very different from previous entry, make a note in the ELOG. (SCREENSHOT once, if no changes record OK in elog)
- Asic control : sets asic parameters
WS3 : left monitor - Merge control, Tape server
right monitor - servers (just terminals, do not close) , data being written to file
- Check NewMerger tab. Hit reload button and see if 'current links with data' and 'current merged data rate' are updating. All links should go green, but not necessarily at the same time. Keep hitting refresh until you see all of them going green at least once.
- Data rate, hit reload should be around 100,000. Record data rate in elog
- Check tapeService tab. Hit reload button. Check data rate in Kbytes/sec box. Record data rate to elog. This is where the current run number is displayed
- On the right-hand monitor, bottom right terminal, check the current run fragment (sub-run) is being written and is slowly increasing in size. It refreshed automatically every 5 seconds.
WS4 : Leakage current plot
- Check leakage current plot is stable. Transients will occur during motors movement but baseline current should remain consistent. Make sure it is updating and time is correct. (SCREENSHOT once, record OK in elog if no changes) Check present values on WS2, CAEN window
WS5 : Online data monitoring
- Check the following plots are updating for each DSSD
- LowEnergyXY (right click - col - colz). This shows the total number of events, per pixel, since the code was started / re-started.
- LowEnergyAngleE. This shows the angle vs energy plot of all detected events. Can be used to observed elastic scattering / 7Be from lithium measurement
- LowEnergyXYRate (right click - col - colz). This shows the rate over the last 20 seconds.
- LowEnergyExRate (double left click. Right click on y axis - Log scale on y). Rate over the last 20 seconds
- LowEnergyExTotal (double left click. Right click on y axis - Log scale on y). This shows the total energy deposited on all X strips since code restart.
- LowEnergyEyTotall (as above). as above, Y strips. (SCREENSHOT of each per DSSD per shift. If significant changes are observed screenshot again)
- During the shift, shifters should try to integrate peaks of interest. Area to integrate will be given in spreadsheet in same workspace as monitoring code. This is particularly important for D+D where peaks from each detectors for reaction products should be integrated every hour to determine how much time before moving to the next datapoint. For lithium beamtime this should also be done in the angle vs energy plot. Note the number of counts in the spreadsheet in the same workspace.
WS6 : Browser, ELOG
-->IMPORTANT NOTE: MIDAS DAQ can respond slowly. DO NOT try to change tab or give new command while the previous one is being executed. Check activity in right-hand part of tab currently in use. Do not double click on buttons.
Motors computer (Computer to the right)
- Check motors cycle is running. The code will cycle through the loaded motors instructions. When an instruction is being done it is highlighted in bold. Check the bold highlighting cycles through entire set of instructions.
- Check potentiometer is reproducing same max/min values for each cycle of instructions.
- Detectors are on LEFT and RIGHT arm.
- No need for screenshots, but record in the ELOG you checked this.
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683
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Tue May 13 15:07:42 2025 |
JM | Online monitoring code | CARME_Sort histogramming has been updated to aid our understanding online.
> XY plots have been updated to reflect the true position of the beam relative to each detector. Online we will be able to layout in a grid to reflect looking downstream in YR09 (see attachment 1)
> Angle vs Energy plots have been created (see attachment 2). For this the position of the detectors has to hardcoded in the EventClustering header file of the code. This has been done using the detector positions from the 426 keV/u 15N measurement in 2024 which is the reference position. To reflect the true state during the beamtime a correction to these positions is required in the EventClustering regular file (e.g x_position + 30 mm). Correction can be applied using difference between potentiometer value and reference potentiometer values.
Ref potentiometer value LEFT = 36.54 mm
Ref potentiometer value RIGHT = 64.60 mm
> An additional condition based on the cluster y position has been added for an event to be added to the histograms. This can be used to remove edge strips affected by the beam stripe (if beam stripe can't be removed via scrapers). This allows angle vs energy and regular energy histograms to be of use online. Currently this option is set to zero, can be enabled if beam stripe persists.
> Histograms not immediately useful (such as high energy XY etc) have been commented out. This makes the histogram browser cleaner and should ease use for online shifters. (see attachment 3)
> Corrections to CARME_Sort found during analysis of 15N data have been added to the code. These include Event timing cutoffs in the EventBuilder and a corrreciton to the BuildTimestamp function in DataItems file which was causing timewarps.
> Previous CARME_Sort versions have been saved and will be uploaded to github in due time.
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| Attachment 1: Screenshot_from_2025-05-13_15-14-12.png
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| Attachment 2: Screenshot_from_2025-05-13_15-14-38.png
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| Attachment 3: Screenshot_from_2025-05-13_15-28-48.png
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682
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Mon May 12 13:25:09 2025 |
JG | MBS DAQ - overview | An MBS DAQ is running to collect two types of data:
1. WR timestamps for machine events (injection, target ON/OFF, ...)
These are triggering the MBS individually.
2. Scaler rates for machine parameters (target pressures, ring RF, ...)
These are being readout each second by a 1Hz trigger.
DAQ quick manual
MBS node: cry_exp@r4l-70.gsi.de
directory: /esr/usr/cry_exp/2025_JET_CARME/mbs
DAQ running on: cry_exp@atppc028.gsi.de
in a screen session named "jetDAQ"
RFIO server: cry_exp@atppc028.gsi.de
in a screen session named "RFIO"
directory: /u/cry_exp/Beamtimes/202505_Li/lmd
RESTART DAQ on cry_exp@atppc028:
1. cd /u/cry_exp/Beamtimes/202505_Li
2. ./daqstart.sh
ENTER jetDAQ or RFIO screen on cry_exp@atppc028:
- screen -x jetDAQ
- screen -x RFIO
cabling documentation
MBS trigger inputs
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trig. type | event
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1 (PENDING) | ring injection
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2 (PENDING) | detectors IN
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3 (PENDING) | detectors OUT
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4 (PENDING) | target ON (shutter)*
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5 (PENDING) | target OFF (shutter)*
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6 (PENDING) | beam dumped
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11 (PENDING) | 1Hz scaler readout
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*The GENESYS signal logic for the target shutter was changed several times, this means trigger 4 and 5 could be swapped. The motor signals (trigger 2 and 3), however, have not been touched and should be stable.
scaler inputs
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scaler ch. | rate/signal
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1 | gas jet E1 (inlet pressure zone 1)
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2 | gas jet E2 (inlet pressure zone 2)
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3 | gas jet E3 (inlet pressure zone 3)
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4 | gas jet E4 (inlet pressure zone 4)
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5 | gas jet S1 (outlet pressure zone 1)
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6 | gas jet S2 (outlet pressure zone 2)
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7 | gas jet S3 (outlet pressure zone 3)
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8 | gas jet S4 (outlet pressure zone 4)
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9 | gas jet T1
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10 | gas jet T2
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11 | gas jet VV1
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12 | gas jet ??
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13 | Scintillator rate (0 deg. det. YR09) [ONLY AFTER 12-06-2025 16:30]
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14 | -
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15 | -
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16 | -
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17 | cryring IMP horizontal
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18 | cryring IMP vertical
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19 | cryring PCT
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20 | cryring ICT int
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21 | cryring BPM int
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22 | cryring Schottky span 0
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23 | cry-radio
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24 | cryring RF
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25 | -
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26 | -
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27 | -
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28 | -
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29 | -
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30 | -
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31 | -
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32 | -
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681
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Sat Apr 26 22:01:37 2025 |
CB | Proxy bridge | Proxy bridge enabling anydesk and generic Internet access dropped due to atppc025 being rebooted. Found it dropped again late today.
Restarted bridge inside a screen session. |
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680
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Wed Apr 23 11:08:34 2025 |
TD, JM | Background Run |
12.08 DSSSD bias & leakage current - attachments 1-2
CAEN logger program crashed sometime this am - now restarted
DSSSD #2 and DSSSD #4 OK - DSSSD #4 stable since c. 03:00 20.4.25
DSSSD #1 and DSSSD #3 remain high
All DSSSDS show effect of ambient temperature transient in CRYRING hall
CRYRING vacuum and temperature - attachments 3-4
14:40
FEEs started up. Background run started. Pulser running in the at 1HZ, amplitude is 9000.
Note aida03 and aida04 set to MEC due to high rate >100k. This resulted in data rates ~3MB/s. Slow comparator thresholds set to 0x64 (1 MeV)
System checks OK. AIDA16 and ADC calibration check clock status fails.
Run 10 started.
Attachments 5,6,7,8,9 from start of run. Waveforms, ADC data items statistics, New merger, Tape server respectively.
Will continue to monitor during the day until tonight when I will turn off the FEEs again.
Run stopped.
Noticed spike in leakage current for all detectors.
This coincides with change in vacuum around the ring. Some operation is ongoing, all FEEs off, detectors off.
See attachment 10 for leakage currents.
Vacuum gauge in section 9 is back on to allow for ring interlocks.
29/04/25
Turned the FEEs on to check if aida08 is still connected to the coolant loop. Temperatures in normal range after startup. FEEs turned back off for now. |
| Attachment 1: Screenshot_from_2025-04-23_12-07-52.png
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| Attachment 2: Screenshot_from_2025-04-23_12-08-10.png
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| Attachment 3: 1.png
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| Attachment 4: 0.PNG
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| Attachment 5: Screenshot_from_2025-04-23_15-38-33.png
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| Attachment 6: Screenshot_from_2025-04-23_15-40-30.png
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| Attachment 7: Screenshot_from_2025-04-23_15-40-54.png
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| Attachment 8: Screenshot_from_2025-04-23_15-41-13.png
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| Attachment 9: Screenshot_from_2025-04-23_15-41-26.png
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| Attachment 10: Screenshot_from_2025-04-23_16-07-43.png
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| Attachment 11: Screenshot_from_2025-04-29_15-15-52.png
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679
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Tue Apr 22 06:44:02 2025 |
TD | Tuesday 22 April |
07.40 DSSSD bias & leakage current - attachments 1-3
CAEN logger program crashed c. 18.00 April 20 - now restarted
DSSSD #2 and DSSSD #4 OK - DSSSD #4 stable since c. 03:00 20.4.25
DSSSD #1 and DSSSD #3 remain high with slow decrease (ambient temperature approx stable c. 16.5 deg C)
CRYRING vacuum and temperature - attachments 4-5 |
| Attachment 1: Screenshot_from_2025-04-22_07-40-45.png
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| Attachment 2: Screenshot_from_2025-04-22_07-41-10.png
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| Attachment 3: Screenshot_from_2025-04-22_07-47-25.png
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| Attachment 4: 1.png
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| Attachment 5: 2.png
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678
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Sun Apr 20 07:30:29 2025 |
CB | DSSD leakage currents over Easter | Just after midnight on 20/04 it appears DSSD #4 leakage current has perfectly stabilised. See attached.
DSSDs remain biased.
20 April
19:30 - leakage current still stable but anydesk connection not working.
Machine is connected, but connection fails.
21 April
Anydesk connection works again. Leakage current remains stable. What changed? |
| Attachment 1: Screenshot_2025-04-20_083007.png
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| Attachment 2: Screenshot_2025-04-20_193226.png
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| Attachment 3: Screenshot_2025-04-21_085130.png
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677
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Fri Apr 18 16:18:33 2025 |
JM | D+D BBN energies test | D+D minimum energy Ecm = 150 keV which corresponds to Ed=150 keV/u or Ed=300 keV. Therefore we need a threshold below this.
Test 1 - Current status
Current slow comparator threshold is 0x64 (1 MeV). ADC data items rate in all FEEs is essentially zero with this threshold. (except aida03 and aida04). Aida15 and 16 also show ~1k rates when DSSD4 current is fluctuating.
Pulser was set to find point it is cut off by the threshold. Attachments 1,2,3 show 1.8L for nn channels with the pulser set to 570,550 and 530. Over this range pulser disappears. Estimate 550 is equal to ~1 MeV.
Test 2 - Noise level at lower threshold 200 keV
Threshold set to 0x14 (200 keV). Pulser kept at 550 for the time being to gauge location of noise compared to pulser. Attachments 4,5 show 1.8L for nn and pn channels respectively. Some noise observable at low energy.
Note zero energy is around 32500 channels. In nn channels (attachment 4) pulser is to the right of the noise peak, wheras in pn channels (attachment 5) pulser is to the left of noise peak.
Attachment 6 shows data rates with pulser off. Rates okay, only aida15 has very high rate (80k), rest of channels <5k.
Test 3 - Noise level at lower threshold 100 keV
Threshold set to 0xa (100 keV). Pulser kept at 550 for the time being. Attachment 7 shows data rates with pulser off. Rates significantly higher all round. Half of channels >50k, some >100k.
Attachments 8,9 show 1.8L for pn and nn channels respectively. A lot more noise observable at low energy. Pulser peaks generally overshadowed by noise. 100 keV probably too low to set threshold.
Test 4 - Noise level at lower threshold 150 keV
Threshold set to 0xf (150 keV). Pulser kept at 550 for the time being. Attachment 10 shows data rates with pulser off. In general rates are pretty low. Most channels <1k. Aida15 and 16 pretty high.
Attachments 11,12 show 1.8L for nn and pn channels respectively. Noise observable at low energy but in general less than that of the pulser peaks.
Test 5 - D+D pulser peak at lower threshold 150 keV
Theshold kept at 0xf (150 keV). Pulser set to 180 (should be about 300 keV based on Test 1). This should be the level of d+d at our lowest beam energy.
Attachments 13,14 show 1.8L for pn and nn channels respectively.
Test 6 - D+D pulser peak at lower threshold 200 keV
Theshold increased to 0x14 (200 keV). Pulser kept at 180 (should be about 300 keV based on Test 1). This should be the level of d+d at our lowest beam energy.
Attachments 15,16 show 1.8L for nn and pn channels respectively.
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| Attachment 1: Screenshot_from_2025-04-18_15-38-00.png
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| Attachment 2: Screenshot_from_2025-04-18_15-39-21.png
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| Attachment 3: Screenshot_from_2025-04-18_15-40-29.png
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| Attachment 4: Screenshot_from_2025-04-18_15-45-09.png
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| Attachment 5: Screenshot_from_2025-04-18_15-47-36.png
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| Attachment 6: Screenshot_from_2025-04-18_15-48-20.png
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| Attachment 7: Screenshot_from_2025-04-18_15-50-58.png
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| Attachment 8: Screenshot_from_2025-04-18_15-52-24.png
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| Attachment 9: Screenshot_from_2025-04-18_15-54-06.png
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| Attachment 10: Screenshot_from_2025-04-18_15-57-50.png
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| Attachment 11: Screenshot_from_2025-04-18_15-59-38.png
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| Attachment 12: Screenshot_from_2025-04-18_16-00-31.png
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| Attachment 13: Screenshot_from_2025-04-18_16-04-04.png
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| Attachment 14: Screenshot_from_2025-04-18_16-05-24.png
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| Attachment 15: Screenshot_from_2025-04-18_16-08-05.png
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| Attachment 16: Screenshot_from_2025-04-18_16-09-22.png
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676
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Fri Apr 18 08:17:38 2025 |
JM | More testing | 09:10
Arrived at GSI. Leakage currents status same as before, DSSD4 is still fluctuating. DSSD1 and DSSD3 currents are definitely lower again compared to previous days. I am convinced they are decreasing over time, whether this will be enough for our measurement....
While in the cave I again removed the motors pins so that the detectors can can be shook in an attempt to perform magic. While in the cave I also connected the CRYRING ground cable to the coolant pipe (ground config 11). Will see effect on rates / pulser.
Ground config 11 - see attachments 1-8. Rates in aida03 are massively down by a factor 10! Rates now ~20k. Aida04 still around 300k. On attachment 4 we can see the noise from zero energy on aida03 is massively down and we can now see the pulser, although the peak is double. Similar low energy noise is now appearing on aida15 and aida16 of DSSD4. Is this the early phase of what happended to DSSD1 and DSSD3?
Note the waveforms shown in attachments 7 and 8 change quite alot when updating the spectrum browser. Wave structure very visible in 7 but after updating a few times this disappears before coming back again a bit later.
20 minutes later ...
DAQ continued for about 20 minutes, noticed the leakage current in DSSD4 was no longer fluctuating. Zero'd stats and histograms to look again.
Stats in aida03 have increased back to ~100k, still less than before but back up from ~20k. Check of the pulser widths shows they have decreased across the board from the previous test 20 mins ago.
Leaving DAQ to run for a bit longer, the rates in aida03 continue to increase and are now back ~200k (back where it was).
I am currently trying to cycle motors. No effect on leakage current when cycling pneumatic motor. Note when using single commands such as 'l p in' I have no problems. But when trying a longer command where I ask the code to wait before pulling the pneumatic out again the code crashes. ??? Crash not repeated by Carlo remotely, Perhaps it is my laptop, or a bug relating to windows. Will investigate back in Edinburgh.
Have performed the same bias test for DDSD4 as #1 and #2 in previous elogs. Same behaviour observed. No (0.01uA) leakage current with only nn and current ramps up and falls to zero with only pn. I did notice that the ion pumps were arcing, I have not noticed this in prevous days. They have now been turned off, I think we can leave them off as they do little for the vacuum anyway unless using heavy gas taget gas. VI bias curve looks identical to one performed at the start of the week.
I have moved the PC power to the 19 inch rack. Power cycled the FEEs. I noticed the leakage current on DSSD4 was fine during VI test but after starting the FEEs power cycle they started to fluctuate again. After about 5 minutes after the startup, DSSD4 leakage current returned to a normal stable level. I have seen spikes in leakage current for all detectors during power cycle but perhaps it could also cause the fluctuations in #4. Overnight I have left FEEs off due to uncertainty over the swagelock on aida08 and the fact I was changing ground a lot so a background didn't make sense. Perhaps leaving FEE power on will stabilise DSSD4? I will leave system to stabilise a bit now (after seeing rates and pulser widths change in previosu test) and check pulser widths. Going for an awful GSI coffee.
New configuration: See attachments 9-13. Rates on aida03 and aida04 still remain very high >200k. Pulser widths across the board look pretty good. All have reduced since moving the PC on same power supply as 19 inch rack. DSSD4 leakage current has been stable the last hour since FEE power on. Waveforms look improved too. No longer see such high amplitude oscillations. Updated several times, see no change in waveforms like previous test.
Attachment 14 for pulser widrths from tests this week. Note x means no value. This could be because the width was so very big, or the test input wasn't connected. These values aren't too bad. DSSD2 and 3 have avergae pulser width (1.8L only) of ~60 keV.
Tried ground cable to NIM bin, had no effect / maybe negative effect. Disconnected cable.
D+D tests in next elog
Finally a pulser walkthrough was completed. Run8 has pulser settings unchanged, slow comparator at 0x64, aida03 and aida04 set to MEC. Pulser amplitudes 9000,8000,7000,6000,5000,4000,3000,2000,1000
A second walkthrough (Run9) was done with slow comparator set to 0x14, aida03 and aida04 set to MEC. Pulser amplitudes 9000,8000,7000,6000,5000,4000,3000,2000,1000,700,400 (so that we can check ~BBN energies) - attachment 15
During second walkthrough, DSSD4 starting fluctuating in leakage current again. No-one was in the ring. No observable change. FEEs were ON and were currently acquiring. ?? See noise which in attachment 15 on aida15/16 that only started when current was fluctuating.
FEEs off. Bias on and monitoring. Pins re-inserted into motors. Compressed air off. |
| Attachment 1: Screenshot_from_2025-04-18_09-54-29.png
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| Attachment 2: Screenshot_from_2025-04-18_09-55-40.png
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| Attachment 3: Screenshot_from_2025-04-18_09-56-51.png
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| Attachment 14: pulser-widths.png
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| Attachment 15: Screenshot_from_2025-04-18_17-03-56.png
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675
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Thu Apr 17 08:51:29 2025 |
JM | Grounding cont. | 09:00
Came in to see the bias for DSSD4 which has been fluctuating for the past few days had tripped during the night. From the gnuplot it looks like it was fluctuating all night and just after midnight it went above 20uA and tripped.
Other leakage currents are around the value they have been recently, day night cycle still observed. Again perhaps the leakage current of DSSD1 and DSSD3 is slowly decreasing and reaching a lower minimum value. Reset the module, DSSD4 does bias back up and is currently around 10uA. See attachments 1+2.
I have also noticed a small spike in current when starting up the FEE power, see the small spikes in attachment 2.
Continuing with different ground configurations from yesterday.
Ground config 5: I have now removed the grounding cables between non-bias FEE modules. So grounding cable goes between pn and nn bias FEEs and then one grounding cable to the coolant pipe. No grounding on any other FEEs. (attachments 3-8). Effect on pulser widths is hard to discern, some widths have decreased i.e 5 and 6 wheras others have increased such as 11. One interesting note is that the rates on aida03 have decreased by just over a factor 2 so now read ~100k. Whether this is the result of different grounding or maybe similar to what was seen for DSSD3 where rates decreased on there own over time? Attachment 8 shows the rates for each ASIC and most have now reached similar level to the other FEEs (note log scale).
Ground config 6: Have kept grounds to only pn or nn bias FEEs. Have now also included a ground cable from the body of the FEE module into the grounding connection. The ADC data items rate increase from 100k to 150k in aida03, no other impact on rates. Pulser widths remain largely unchanged, although some widths saw increases in the pulser widths. (attachments 9-13)
Ground config 7: Wanted to check impact of having no grounds at all. No impact on leakage currents. Rates look pretty similar for all FEEs, aida03 and aida04 200k and 350k respectively. Pulser widths and waveforms significantly worse than grounded case. See attachments 14-18
Ground config 8: Have reattached all ground cables (back to config1). In addition I have added a ground cable from the coolant pipe to effectively the CARME chamber. Rates appear pretty unchanged. Pulser widths better than no grounding but worse than original configuration. Attachments 19-23
Note since after lunch DSSD4 leakage current no longer fluctuating. Nothing has been changed. As I write that currents start fluctuating again. Maybe some ongoing work in the cave is affecting this?
Removed groud cable going to the chamber.
I wanted to rule out any affect from the test inputs. Have removed all test inputs. Only input is directly from pulser to DSSD3 as this previously had best pulser widths. All other cables removed. See attachments 24-26. Still see very high rates in aida03 and aida04 (250k and 350k). Pulser widths in DSSD3 seem worse now for some reason? While pulser detattched decided to lower slow comparator to 0x32 (500keV) and 0x24 (360 keV) to see rates in all FEEs. Rates still look pretty good, other than aida03 and 04. See attachments 27,29. Putting test inputs back.
Test inputs all back. Ground configuration back to configuration 1. Pulser tests, widths are best so far - will upload them later from all tests.Rates good in all except aida03 and aida04 still.
FEEs off, bias on and monitoring. Have put pins back in motors.
20:50
Bias has tripped again on DSSD4. It had remiained stable with noi fluctuations ~20 mins before leaving. |
| Attachment 1: Screenshot_from_2025-04-17_09-40-03.png
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674
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Wed Apr 16 08:20:05 2025 |
JM | Grounding | 09:00
Leakage currents this morning again appear to have lowered during the night. Current plot shows a day/night variation but I think the minimum is decreasing ever so slightly.
This morning DSSD1=15.1uA and DSSD3=14.4uA, this is ~0.3-0.4 uA lower than yesterday. DSSD4 is still fluctuating in its leakage current and looks to have been all night. See attachment 1.
Will now proceed to systematically check all grounds before restarting AIDA.
Several cables have been re-routed this morning to clean up the area, allow us to see clear what cable goes where, and are avoid any unwanted interference. E.g. ion pump cables have been re-routed to not be near the bias cables, one ion pump cable was running between the power and hdmi on one of the FEEs, this was been sorted.
All grounds have been checked, some loose cables have been tightend up. Current ground configuration has all the adaptor cards (nn and pn) on a single detector connected together. One grounding cable then goes from each detector to the right coolant pipe which all the other detectors are also grounded to. This was the configuration for the previous beamtime. Will start pulser tests after lunch. Bias back on, leakage current slowly increasing again, DSSD3 current no longer fluctuating.
13:00
Ground config 1 - attachments 2-7 (described above)
Ground config 2 - attachments 8-10 (grounds now go to the CRYRING ground cable not the coolant pipe and jumper removed form bias module)
pulser widths 1.8L worse pretty much across the board. No sig impact on rates
Ground config 3 - attachments 11-14 (grounds returned to coolant pipe)
pulser widths 1.8L better than config 2 but still worse than config1
Ground configuration returned to first configuration. Pulser widths consistent with that seen before.
Additional bias tests.
Disconnected the pn bias cable (core) from DSSD1 but left nn bias cable connected. Biased. Observed bias ramp up but no leakage current was seen.
Reconnected pn bias cable but now disconnected nn bias cable. Biased. Observed bias ramp up, leakage current was seen to increase during ramp to ~8uA. Once fully ramped, leakage current started to slowly decrease and eventually went to zero.
Repeated same tests with DSSD2. Same behaviour observed as with DSSD1.
Have removed motors pins and tried some movement again. No effect on leakage current. Checked pulser widths before movement and after movement (with pnuematic IN). No change in pulser widths.
End of day status FEEs off, bias on and monitoring. Motor pins out to allow for last movement check, motors code running in screen session. |
| Attachment 1: Screenshot_from_2025-04-16_09-19-34_1.png
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673
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Tue Apr 15 12:23:10 2025 |
JM | Leakage current / CARME issues | 14/04/25
Arrived at GSI in the afternoon.
Found that the coolant loop on aida08 had popped out which resulted in the high FEE temperatures observed (see attachment 1). Female swagelock connector on FEE suggested to be the cause as this connector has the locking mechanism. FEE dismounted and female swagelock connector removed. No obvious defect in the connector (see attachment 2).
Turning on detectors we observe ~4uA in DSSD2 and DSSD4 (right hand side detectors) and ~15uA in DSSD1 and DSSD3 (left detectors). Leakage currents in left hand side detectors is down from ~17uA seen at the end of last week and ~19uA at start of last week. Temperatures in the cave do not appear to have changed sufficiently to explain this change. VI curve completed to test diode response (attachment 3+4).
Motors turned on to again see if it changes the leakage currents in any way. Both arms homed. Left arm moved in with pneumatic and servo (10mm). No change in leakage currents during movement or when fully in. Same procedure with the right arm. No change in leakage currents in either. I doubt this is a light affect. If some light was incident on the left hand detectors, moving the detectors should have changed the amount of light on them in some way, reducing the leakage current. Similarly if light can hit the detector when fully in for the left arm, some should be hitting the right arm when it is fully in too, but no change observed on the right arm either. No light sources found on interaction chamber, baking jackets covers all ports.
Movement for several repeptitions with the pneumatic tried to see if this had any affect -> no change
Bias lines for DSSD1 and DSSD2 swapped around on the caen bias module. No change in leakage current for DSSD1 or 2. Channel on bias module not to blame.
Tried turning ion pumps off, no change on leakage currents.
Tried reverse biasing the detectors. Polarity for channels 0 (DSSD1) and 2 (DSSD3) swapped from -ve to +ve on bias module. Core and braid swapped on adaptor card. Completed VI curve when reverse biased for these detectrors. Obtain the same curve as with -ve polarity. Left at 100V for 10-15 minutes. Put polarities back to -ve, no change in leakage currents observed.
Opended up one of the diamond windows with bias off. Shone my phone light through the window for ~30 seconds. Closed window off again, biased, no change observed. Left detectors biased overnight. CH0 - 15.4 uA, CH2-14.7uA.
15/04/25
No change in leakage currents overnight. From gnuplot they look pretty flat overnight. Perhaps slight decrease.
Checked attaching LK2 jumper to aida09 (nn DSSD3). Could not reach other nn adaptor card. No effect on leakage current. Dismounted jumper.
New female connector mounted on aida08 and FEE remounted.
Restarted AIDA system by closing all windows and servers. Error on starup, could not connect to relay16 for FEE power.
Issue related to dew point interlock. Dew point sensor is very sensitive and any movement can cause it to trip. Sensor was not well supported on the coolant pipe. Sensor remounted with plastic zip ties. Issue resolved. Investigate some noise issues in the afternoon
After lunch I have noticed the leakage current have increased slightly. See attachment 5. CH3 is higher and appears to be fluctuating by 1-2uA. Turning off bias and going to cave to investigate.
Bias still higher and fluctating on CH3. Konstantin is in the ring, but he has not started any works yet, some grossmontage are also in the ring and are working on the new source. Could this be affecting us? Either way, will startup daq to check rates/noise etc.
Previous settings applied (i.e all channels back to LEC). Have lost the dew point interlock again!
I have suspended the dew point sensor in the air for the time being -> need to put a dummy in.
Grossmontage working on ion source have left and leakage current on DSSD3 is no longer fluctuating -> coincidence? (attachment 6)
AIDA started again. Rates appear OK except for on 3,4 and 15. (see attachement 7,8,9) Note the rates on 9,10 are reduced compared to previous elog entry. Note pulser off. Note on aida startup aida16 clock status fail and ADC calibration fail for aida 6,14 and 16
16:00
We again see DSSD3 leakage current fluctuating. I will head back to the cave to check if anyone is working again? Nikos and davide working on the target but can't see how they would impact the leakage current (they were only installing a support for the new turbo)
DSSD3 remains fluctuating even now they have stopped working.
Pulser on. Same settings as elog 664 -> freq = 10 Hz
Overall pulser widths look bad, rates (ADC data items) look okay (~1000) for all except aida03 and aida04 (>250,000). Again rates on aida09 and aida10 are good although the widths are poor. One change I did make was to ground the FEEs to the CRYRING ground wheras previously they were grounded to the coolant pipe. I may try putting them back onto the coolant loop to see if there are any changes. Note grounds all around have not been examined yet. Attachments 10-17 with pulser on.
Moved grounds back onto the coolant pipe -> no effect on ADC rates.
Also tried lowing slow comparator theshold down to 150 keV (0xf) for most channels (except aida3 and 4). See rates attachment 18.
FEE power off, bias remains on
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| Attachment 1: 20250414_120219.jpg
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| Attachment 3: left-VI.png
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672
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Thu Apr 10 10:53:14 2025 |
TD | Thursday 10 April | 11.50 DAQ continues
Data file APR25/R6_13
DSSSD bias & leakage current - attachment 1
FEE64 temps OK - attachment 2
ADC data item stats - attachment 3
Merger & Tape Server - attachment 4-5
Disk file log - attachment 6
event rate increased significantly at some point this morning but is currently OK
19.21 FEE64 power OFF - aida08 high temperature
DSSSD bias & leakage current - attachment 7
FEE64 temps - attachment 8
aida08 high temperature - FEE64 power OFF, detector HV OFF |
| Attachment 1: Screenshot_from_2025-04-10_11-50-32.png
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671
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Thu Apr 10 07:02:12 2025 |
CB (remotely) | Current logging enabled - sort of | There appear to be issues with Shahab's caenlogging program. It crashes occasionally, with an error indicating the number of columns in the terminal is incorrect. We will have to ask Shahab.
For now
1. Start the caen_screen.sh script on nnrp1 (aka CARMEMotorsPi - why was it renamed? It should stay as CARMEMotorsPi to avoid duplicate names).
This starts connect to the caen power module via TTY inside a screen called caenhv. Currently on desktop 1
2. On nnrpi1, start the caenlogging program --settings caenlogger_settings_gsi.toml
3. On carme-gsi, in ~/Programs/caenlogger start the gnuplot script
If the caenlogger script crashes, restart it on the second terminal
More investigations required on the crash. |
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670
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Wed Apr 9 10:02:21 2025 |
TD | CARME equipment in CRYRING area moved |
There was some tidying up of the CRYRING hall in advance of this week's EC evaluation meeting at GSI.
CARME equipment stored in central area of the CRYRING hall has been moved to the roof storage area near rooms 2.033/4 and a cupboard near the main entrance to the CRYRING
hall - attachments 1-2.
Please contact Davide Racano for further information. |
| Attachment 1: 20250409_102115.jpg
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669
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Wed Apr 9 02:40:04 2025 |
TD | Wednesday 9 April | 03.37 DAQ continues
Data file APR25/R5_8
DSSSD bias & leakage current - attachment 1
FEE64 temps OK - attachment 2
ADC data item stats - attachment 3
Merger & Tape Server - attachment 4-5
10.23 New run
Data file APR25/R6
alpha background - pulser OFF
all histograms & stats zero'd
DSSSD bias & leakage current - attachment 6
FEE64 temps OK - attachment 7
ADC data item stats - attachment 8
Merger & Tape Server - attachment 9-10
WR timestamps OK - attachment 11 |
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668
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Tue Apr 8 10:46:13 2025 |
TD | Tuesday 8 April |
11.30 CRYRING vacuum and temperature - attachments 1-2
DSSSD bias & leakage current - attachment 3
c. 1uA reduction in DSSSD#1 and DSSSD#2 leakage currents cf. yesterday but remain high cf.June 2024
FEE64 temps OK - attachment 4
System wide checks - clock fail aida16 - attachments 5-6
aida16 global clock status 0x6 - non-critical failure, often resolved by a power cycle.
ADC data item stats - attachment 7
DSSSD #3 n+n Ohmic side FEE64 rates return to c. normal cf. yesterday
per FEE64 Rate spectra - attachment 8
per FEE64 1.8.L spectra - attachments 9-10
pulser peak width aida11 55 ch FWHM, aida09 75 ch FWHM
only DSSSD #3 aida11/aida12 have expected peak widths
per FEE64 1.8.W spectra - 20us FSR - attachments 11-13
WR timestamps OK - attachment 14
17.29 DSSSD bias & leakage current - attachment 15
FEE64 temps OK - attachment 16
WR timestamps OK - attachment 17
ADC data item stats - attachment 18
per FEE64 Rate spectra - attachment 19
17.35 All histograms & stats zero'd
Start run
Data file APR25/R5
alpha background
EG&G Ortec 448 Pulser
amplituide 90,000
normalise 5.00
x5 attenuator IN
INT OSC
frequency 2Hz
t_r 100ns
tau_d 50us (1000us setting does not work)
polarity +
ASIC settings 2025Apr08-13.45.30
slow comparator 0x64
aida03, aida04, aida09, aida10 LEC/EC range setting -> MEC
per FEE64 Rate spectra - attachment 20
Merger & Tape Server - attachment 21-22
20.41 DAQ continues
Data file APR25/R5_7
DSSSD bias & leakage current - attachment 23
FEE64 temps OK - attachment 24
ADC data item stats - attachment 25
Merger & Tape Server - attachment 26-27
per FEE64 Rate spectra - attachment 19
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667
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Mon Apr 7 08:59:41 2025 |
TD | Monday 7 April |
10.00 FEE64 power ON
CARME IE514 OFF
Confirm DAQ SETUP restores ASIC settings 2024Apr24-14.14.03 for *all* FEE64s
DSSSD bias & leakage current - attachment 1
leakage currents remain high cf. June 2024 - status of vacuum group controlled ion gauge unknown
12.10 FEE64 power ON
DSSSD bias & leakage current - attachment 2
FEE64 temps OK - attachment 3
All system wide checks OK
WR timestamps OK - attachment 4
per FEE64 Rate spectra - attachments 5-6
ADC data item stats - attachment 7
13.45 ML says vacuum group have switched off YR09DD1AS
DSSSD bias & leakage currents - attachment 8
DSSSD #2 and DSSSD #4 leakage currents return to 'normal' values cf. June 2024
DSSSD #1 and DSSSD #3 leakage currents reduce by c. 10-15% only and remain high cf. June 2024
17.47 DSSSD bias OFF
FEE6 Power OFF
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666
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Sun Apr 6 14:21:53 2025 |
TD | [How To] Startup CARME |
- water flow/interlock checks
check water flow to/from inflow/outflow manifolds
check all coolant lines to all FEE64s are connected
check USB-controlled ac mains relay 'water' LED illuminated water flow and dew point sensor interlocks OK
- carme-gsi network cabling
from patch panel YR10/2
yellow network cable to carme-gsi operating in 19" rack room (2.033)
green network cable to carme-gsi operating in counting room (2.034)
- boot carme-gsi
systemctl start dhcpd start DHCP dynamic network configuration
ssh -L 8080:proxy.gsi.de:8080 carme@atppc025 establish proxy port for AnyDesk access
ssh -X pi@nnrpi1
/MIDAS/TclHttpd/linux-arm/TclHttpd-server & start MIDAS server
ssh -X pi@nnrpi1
./caen_screen.sh start CAEN N1419ET control interface
- enable current logging
open a new terminal
ssh pi@nnrpi1
cd Programs/caenlogger
caenlogger --config caenlogger_config_gsi.toml
open a new terminal
cd Programs/caenlogger
gnuplot plot_current.gp
- system log
sudo tail -f /var/log/messages monitor system log e.g. filesystem mounts for FEE64 embedded processors
(sudo does not work - use su instead. will have to fix)
- FEE64 power ON
Start browser on nnrpi1:8015
Power On
- Start MIDAS
select server start icon (leftmost) 1x terminal session will appear
Start browser tab localhost:8015
Data Acquisition Control Services
Update (nothing should change)
Act on all Data acquisition server TICKED
RESET
SETUP
Enable histograms and waveforms
Open ASIC control
Act on all FEE64 modules
Act on all ASICS
System functions -> Check ASIC control
Check FEE64 temperatures (Reload)
System wide checks
Clock
ADC Calibration
White Rabbit
Drop down -> collect FPGA errors
Check FPGA
Synchronise ASIC clocks
FADC Align & Check - all FEE64s
Drop down -> calibrate ADCs
System wide checks
Clock
ADC calibration
If any FEE fails, FADC calibrate it again
DAQ GO
WR timestamp check WR timestamp monotonically increases aida01->aida16
To startup Merger and Tape Server
DAQ STOP
8115 server, tape server, merger -> from buttons on top
3x terminal sessions will appear
Start browser tab localhost:8115
New Merge control
Tape Service
NetVar Service
Merger tab
(top) setup
go (ignore error message)
enable output to data storage Merger State = GOing : merge/running : xfer Links => Merger => Storage
tape server
Inquire Available Devices
Allocate Device
Enter volume name (if already defined)
Mount volume
Reload
Set run number
Open file
Open a new terminal
Navigate to /TapeData/ and the volume name
watch ls -lht
Enable data transfer #1 (in Run Control)
X should appear next to every FEE
Check netvar variable NetVar.MERGE.RunOptions = 1
DAQ GO
check merger rate and activity of all FEE64s
check tape server blocks written number is increasing
Server state -> Go |
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665
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Sun Apr 6 11:40:48 2025 |
TD | Options DB reconstructed | Options directory corrupted unable to change Options settings per https://elog.ph.ed.ac.uk/CARME/664
Move old Options directory to Options.BAK-060425
Created new Options directory (777), aida01-aida16 sub directories (777) and populated using CONTENTS file from the old aida01 options (777)
All FEE64s will now use ASIC.settings 2024Apr24-14.14.03
[npg@carme-gsi ~]$ cd /MIDAS/DB/EXPERIMENTS/AIDA
[npg@carme-gsi AIDA]$ ls
2017Nov15-15.21.56 2019Dec19-16.19.51 2021Apr29-13-16-00 2024Feb08-15.59.09 CONTENTS Options.311019 Options.BAK-060425 Options.PRISTINE README
2018Aug21-13.17.09 2019Mar31-16.15.57 2022Jan31-11-52-00 2024Jan20-12.02.08 Histograms Options.BACKUP180920 Options.BAK-130421 Options.PRISTINE_TRIPLE
2018Jun22-11.28.18 2019Oct31-13.24.23 2024Apr24-14.14.03 aida_check_db.sh Options Options.BACKUP190425 Options.Current Options.WORKING
2018Sep06-14.38.28 2020Apr15-20.29.26 2024Feb05-10.22.28 aida_check_db.sh~ Options.220131 Options.BACKUPCorrupt Options.Dec19 Options.WORKING.Old
[npg@carme-gsi AIDA]$ ls -lR Options
Options:
total 0
drwxrwxrwx. 2 npg npg 22 Apr 6 12:33 aida01
drwxrwxrwx. 2 npg npg 22 Apr 6 12:35 aida02
drwxrwxrwx. 2 npg npg 22 Apr 6 12:35 aida03
drwxrwxrwx. 2 npg npg 22 Apr 6 12:35 aida04
drwxrwxrwx. 2 npg npg 22 Apr 6 12:35 aida05
drwxrwxrwx. 2 npg npg 22 Apr 6 12:35 aida06
drwxrwxrwx. 2 npg npg 22 Apr 6 12:35 aida07
drwxrwxrwx. 2 npg npg 22 Apr 6 12:35 aida08
drwxrwxrwx. 2 npg npg 22 Apr 6 12:35 aida09
drwxrwxrwx. 2 npg npg 22 Apr 6 12:35 aida10
drwxrwxrwx. 2 npg npg 22 Apr 6 12:35 aida11
drwxrwxrwx. 2 npg npg 22 Apr 6 12:35 aida12
drwxrwxrwx. 2 npg npg 22 Apr 6 12:35 aida13
drwxrwxrwx. 2 npg npg 22 Apr 6 12:35 aida14
drwxrwxrwx. 2 npg npg 22 Apr 6 12:35 aida15
drwxrwxrwx. 2 npg npg 22 Apr 6 12:35 aida16
Options/aida01:
total 4
-rwxrwxrwx. 1 npg npg 1027 Apr 6 12:33 CONTENTS
Options/aida02:
total 4
-rwxrwxr-x. 1 npg npg 1027 Apr 6 12:35 CONTENTS
Options/aida03:
total 4
-rwxrwxr-x. 1 npg npg 1027 Apr 6 12:35 CONTENTS
Options/aida04:
total 4
-rwxrwxr-x. 1 npg npg 1027 Apr 6 12:35 CONTENTS
Options/aida05:
total 4
-rwxrwxr-x. 1 npg npg 1027 Apr 6 12:35 CONTENTS
Options/aida06:
total 4
-rwxrwxr-x. 1 npg npg 1027 Apr 6 12:35 CONTENTS
Options/aida07:
total 4
-rwxrwxr-x. 1 npg npg 1027 Apr 6 12:35 CONTENTS
Options/aida08:
total 4
-rwxrwxr-x. 1 npg npg 1027 Apr 6 12:35 CONTENTS
Options/aida09:
total 4
-rwxrwxr-x. 1 npg npg 1027 Apr 6 12:35 CONTENTS
Options/aida10:
total 4
-rwxrwxr-x. 1 npg npg 1027 Apr 6 12:35 CONTENTS
Options/aida11:
total 4
-rwxrwxr-x. 1 npg npg 1027 Apr 6 12:35 CONTENTS
Options/aida12:
total 4
-rwxrwxr-x. 1 npg npg 1027 Apr 6 12:35 CONTENTS
Options/aida13:
total 4
-rwxrwxr-x. 1 npg npg 1027 Apr 6 12:35 CONTENTS
Options/aida14:
total 4
-rwxrwxr-x. 1 npg npg 1027 Apr 6 12:35 CONTENTS
Options/aida15:
total 4
-rwxrwxr-x. 1 npg npg 1027 Apr 6 12:35 CONTENTS
Options/aida16:
total 4
-rwxrwxr-x. 1 npg npg 1027 Apr 6 12:35 CONTENTS
[npg@carme-gsi AIDA]$ ls
2017Nov15-15.21.56 2019Dec19-16.19.51 2021Apr29-13-16-00 2024Feb08-15.59.09 CONTENTS Options.311019 Options.BAK-060425 Options.PRISTINE README
2018Aug21-13.17.09 2019Mar31-16.15.57 2022Jan31-11-52-00 2024Jan20-12.02.08 Histograms Options.BACKUP180920 Options.BAK-130421 Options.PRISTINE_TRIPLE
2018Jun22-11.28.18 2019Oct31-13.24.23 2024Apr24-14.14.03 aida_check_db.sh Options Options.BACKUP190425 Options.Current Options.WORKING
2018Sep06-14.38.28 2020Apr15-20.29.26 2024Feb05-10.22.28 aida_check_db.sh~ Options.220131 Options.BACKUPCorrupt Options.Dec19 Options.WORKING.Old
[npg@carme-gsi AIDA]$ ls -lR Options.BAK-060425
Options.BAK-060425:
total 0
drwxrwxr-x. 2 npg npg 22 Jan 31 2022 aida01
drwxrwxr-x. 2 npg npg 22 Jan 31 2022 aida02
drwxrwxr-x. 2 npg npg 22 Jan 31 2022 aida03
drwxrwxr-x. 2 npg npg 22 Jan 31 2022 aida04
drwxrwxr-x. 2 npg npg 22 Jan 31 2022 aida05
drwxrwxr-x. 2 npg npg 22 Jan 31 2022 aida06
drwxrwxr-x. 2 npg npg 22 Jan 31 2022 aida07
drwxrwxr-x. 2 npg npg 22 Jan 31 2022 aida08
drwxrwxr-x. 2 npg npg 22 Jan 18 2024 aida09
drwxrwxr-x. 2 npg npg 22 Jan 18 2024 aida10
drwxrwxr-x. 2 npg npg 22 Jan 18 2024 aida11
drwxrwxr-x. 2 npg npg 22 Jan 18 2024 aida12
drwxrwxr-x. 2 npg npg 22 Jan 18 2024 aida13
drwxrwxr-x. 2 npg npg 22 Jan 18 2024 aida14
drwxrwxr-x. 2 npg npg 22 Jan 18 2024 aida15
drwxrwxr-x. 2 npg npg 22 Jan 18 2024 aida16
Options.BAK-060425/aida01:
total 4
-rwxrwxr-x. 1 npg npg 1027 Apr 5 18:05 CONTENTS
Options.BAK-060425/aida02:
total 4
-rwxrwxr-x. 1 npg npg 1026 Feb 19 2022 CONTENTS
Options.BAK-060425/aida03:
total 4
-rwxrwxr-x. 1 npg npg 1026 Jan 20 2024 CONTENTS
Options.BAK-060425/aida04:
total 4
-rwxrwxr-x. 1 npg npg 1026 Dec 1 2022 CONTENTS
Options.BAK-060425/aida05:
total 4
-rwxrwxr-x. 1 npg npg 1027 Nov 30 2022 CONTENTS
Options.BAK-060425/aida06:
total 4
-rwxrwxr-x. 1 npg npg 1026 Jan 20 2024 CONTENTS
Options.BAK-060425/aida07:
total 4
-rwxrwxr-x. 1 npg npg 1026 Jan 31 2022 CONTENTS
Options.BAK-060425/aida08:
total 4
-rwxrwxr-x. 1 npg npg 1026 Feb 4 2022 CONTENTS
Options.BAK-060425/aida09:
total 4
-rwxrwxr-x. 1 npg npg 1026 Jan 18 2024 CONTENTS
Options.BAK-060425/aida10:
total 4
-rwxrwxr-x. 1 npg npg 1026 Feb 1 2024 CONTENTS
Options.BAK-060425/aida11:
total 4
-rwxrwxr-x. 1 npg npg 1026 Feb 3 2024 CONTENTS
Options.BAK-060425/aida12:
total 4
-rwxrwxr-x. 1 npg npg 1026 Jan 18 2024 CONTENTS
Options.BAK-060425/aida13:
total 4
-rwxrwxr-x. 1 npg npg 1026 Jan 18 2024 CONTENTS
Options.BAK-060425/aida14:
total 4
-rwxrwxr-x. 1 npg npg 1026 Feb 8 2024 CONTENTS
Options.BAK-060425/aida15:
total 4
-rwxrwxr-x. 1 npg npg 1027 Feb 3 2024 CONTENTS
Options.BAK-060425/aida16:
total 4
-rwxrwxr-x. 1 npg npg 1027 Jun 19 2024 CONTENTS
[npg@carme-gsi AIDA]$ cat Options/aida01/CONTENTS
Index string Stat.offset&&Aida_Hist_W_Enable&&TS_SYNC_PHASE&&ExtClk&&Aida.shift&&MACB_TRIG_MODE&&Aida.offset&&RunNumber&&Aida_GroupBase&&Rate.channels&&Stat.channels&&Aida.Vchannels&&ASIC.settings&&Aida_Hist_D_Enable&&WAVE_DMA_HWM&&Stat.shift&&Aida.Wchannels&&Aida_Hist_V_Enable&&Include.Aida&&Aida.channels&&DataAcqPgm&&Aida_Hist_H_Enable&&DataFormat&&ASIC_DMA_HWM&&Aida_Hist_L_Enable
Stat.offset string 64
Aida_Hist_W_Enable string 1
Aida.shift string 0
TS_SYNC_PHASE string 0x0
ExtClk string 1
Aida.offset string 0
MACB_TRIG_MODE string 4
RunNumber string 133
Rate.channels string 512
Aida_GroupBase string 1
Stat.channels string 512
Aida_Hist_D_Enable string 1
ASIC.settings string 2024Apr24-14.14.03
Aida.Vchannels string 256
WAVE_DMA_HWM string 0x0007ffff
Aida.Wchannels string 1020
Stat.shift string 6
Include.Aida string 0
Aida_Hist_V_Enable string 0
Aida.channels string 65536
DataFormat string 0x0000
DataAcqPgm string AidaExecV9
Aida_Hist_H_Enable string 1
ASIC_DMA_HWM string 0x000fffff
Aida_Hist_L_Enable string 1 |
| Attachment 1: Screenshot_from_2025-04-06_12-59-39.png
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664
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Sun Apr 6 10:17:49 2025 |
TD | Sunday 6 April |
11.15 CARME IE514 ion gauge remains OFF
ML says there are 2x ion gauges with line of sight to the DSSSDs - CARME IE514 (now off) and another controlled by the vacuum group - he will request that this is
turned off Monday
ML says that ion gauges within the upstream e-target should not have line of sight to the DSSSDs
FEE64 power ON
ASIC settings
appear to be using mixture of 2022Jan31-11-52-00, 2024Jan20-12.02.08, 2024Feb08-15.59.09 and 2024Apr24-14.14.03 settings
[npg@carme-gsi Options]$ pwd
/home/npg/MIDAS_Releases/23Jan19/MIDAS_200119/DB/EXPERIMENTS/AIDA/Options
[npg@carme-gsi Options]$ foreach f ( `ls` )
foreach? echo $f
foreach? cat $f/CONTENTS | grep settings
foreach? end
aida01
ASIC.settings string 2024Apr24-14.14.03
aida02
ASIC.settings string 2022Jan31-11-52-00
aida03
ASIC.settings string 2024Jan20-12.02.08
aida04
ASIC.settings string 2022Jan31-11-52-00
aida05
ASIC.settings string 2022Jan31-11-52-00
aida06
ASIC.settings string 2022Jan31-11-52-00
aida07
ASIC.settings string 2022Jan31-11-52-00
aida08
ASIC.settings string 2022Jan31-11-52-00
aida09
ASIC.settings string 2022Jan31-11-52-00
aida10
ASIC.settings string 2022Jan31-11-52-00
aida11
ASIC.settings string 2022Jan31-11-52-00
aida12
ASIC.settings string 2022Jan31-11-52-00
aida13
ASIC.settings string 2022Jan31-11-52-00
aida14
ASIC.settings string 2024Feb08-15.59.09
aida15
ASIC.settings string 2022Jan31-11-52-00
aida16
ASIC.settings string 2024Apr24-14.14.03
slow comparator 0x64 appears to be set for all FEE64s
positive input (p+n junction strips) FEE64s aida01, 02, 05, 06, 09, 10, 11, 12, 13, 15 & 16
negative input (n+n Ohmic strips) FEE64s aida03, 04, 07, 08 & 14
Check ASIC Load all FEE64s
All system wide checks OK
FEE64 temps OK - attachment 1
DSSSD bias & leakage current - attachment 2
leakage currents remain high cf. June 2024
per FEE64 Rate spectra - attachment 3
high rates observed for DSSSD#1 and DSSSD#3 n+n Ohmic strips
2x hot p+n junction channels aida15
per FEE64 1.8.W spectra - 20us FSR - attachments 4-5
ADC data item stats - attachment 6
high rates observed for DSSSD#1 and DSSSD#3 n+n Ohmic strips
CRYRING vacuum and temperature logs - attachments 7-8
12.51 Options DB re-constructed - see https://elog.ph.ed.ac.uk/CARME/665
ASIC settings for all FEE64s restored from 2024Apr24-14.14.03
slow comparator 0x64 appears to be set for all FEE64s
positive input (p+n junction strips) FEE64s aida01, 02, 05, 06, 11, 12, 15 & 16
negative input (n+n Ohmic strips) FEE64s aida03, 04, 07, 08, 09, 10, 13 & 14
WR timestamps OK - attachment 9
14.25 EG&G Ortec 448 Pulser settings
Amplitude 90,000
Normalise 5.00
Attenuator x5 IN
Frequency Relay Line (50Hz)
t_r 100ns
tau_d 50us
Polarity +
per FEE64 Rate Spectra - attachments 10-11
per FEE64 1.8.L spectra - attachments 12-14
Pulser peak width aida06 87 ch FWHM, aida08 94 ch FWHM
electronic noise poor consistent with high leakage current and 1.8.W spectra above
ADC data item stats - attachment 15
15.50 Data transfer to Merger/TapeServer started
Tape Server -> no storage mode
Data directory APR25
16.30 DAQ STOP
FEE64 power OFF
DSSSD bias OFF |
| Attachment 1: Screenshot_from_2025-04-06_11-25-51.png
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| Attachment 2: Screenshot_from_2025-04-06_11-28-58.png
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| Attachment 3: Screenshot_from_2025-04-06_11-36-36.png
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| Attachment 4: Screenshot_from_2025-04-06_11-37-19.png
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| Attachment 5: Screenshot_from_2025-04-06_11-37-56.png
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| Attachment 6: Screenshot_from_2025-04-06_11-35-19.png
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| Attachment 7: Capture.PNG
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| Attachment 8: Capture.PNG
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| Attachment 9: Screenshot_from_2025-04-06_12-57-44.png
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| Attachment 10: Screenshot_from_2025-04-06_15-04-47.png
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| Attachment 11: Screenshot_from_2025-04-06_15-09-13.png
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| Attachment 12: Screenshot_from_2025-04-06_15-05-41.png
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| Attachment 13: Screenshot_from_2025-04-06_15-07-03.png
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| Attachment 14: Screenshot_from_2025-04-06_15-08-25.png
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| Attachment 15: Screenshot_from_2025-04-06_15-39-45.png
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663
|
Sat Apr 5 16:15:04 2025 |
TD | FEE64 power interlock installed |
Water flow and dew point sensors have been installed on the outlet and inlet cooling water manifolds respectively.
Outputs indicating good water flow and ambient temperature above the dew point are connected via an interlock box (constructed by Peter Black)
to the USB-controlled ac mains relay which provides remote control of ac mains power to the AIDA FEE64 PSUs.
The interlock box (see attachment 1) has
1x 24V dc power input (ac mains transformer)
4x sensor inputs (1x dew point, 1x flow and 2x unused, dummy cable inputs)
4x outputs (1x connected to USB-controlled ac mains relay, 3x unused)
When all sensor inputs are OK, 4x yellow LEDs (corresponding to each of the 4x sensor inputs) are illuminated and visible through the transparent
lid of the interlock box - see attachment 2
The USB-controlled ac mains relay yellow 'water' LED is illuminated if interlock is OK - see attachment 3
B+B Sensor Dew Point Controller - attachments 4 & 5
red led (top right) indicates sensor above dew point
Micronics U1000 Mk II Clamp On Ultrasonic Flow Meter - attachments 6-9
Setup as follows
Pipe ID: 44mm
Reading: Flow
Units: litres
Flow Units: l/min
Pipe Material: M/Steel
Set Separation: C 3
All other settings default
Not possible to attach sensor assembly to electronics module for some reason but cabling is attached and unit appears to
work OK. Typical flow c. 75 l/min with signal strength c. 75% - see video attachment 10
Sunday 6 April
FEE64 power OFF
Valve OFF outflow
Flow rate reported by Micronics U1000 Mk II decreases fro c. 75 l/min to 0 l/min over a period of c. 10-15s
USB-controlled ac mains relay - yellow 'water' LED off
Valve ON outflow
Flow rate recovers c. 10-15s
Monday 7 April
FEE64 power ON
Valve OFF outflow
Flow rate reported by Micronics U1000 Mk II decreases fro c. 75 l/min to 0 l/min over a period of c. 10-15s
AIDA PSUs OFF as flow -> 0
Valve ON outflow
USB-controlled ac mains relay - yellow 'water' LED ON
AIDA PSUs remain OFF
Rly16 browser tab continues to display 'power ON' and OK status - attachment 11
but unable switch ALL off
To recover - clsoe Rly16 browser tab, reboot nnrpi1 and restart MIDAS server
Valve ON outflow
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| Attachment 1: 20250405_132338.jpg
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| Attachment 2: 20250405_165907.jpg
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| Attachment 3: 20250405_165916.jpg
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| Attachment 4: 20250405_165850.jpg
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| Attachment 5: Datasheet_dew-point-sensor_0557_0015x.pdf
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| Attachment 6: U1000MKII_Issue-3.1.pdf
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| Attachment 7: 20250405_165827.jpg
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| Attachment 8: 20250405_165831.jpg
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| Attachment 9: 20250405_165838.jpg
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| Attachment 10: 20250405_165753.mp4
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| Attachment 11: Screenshot_from_2025-04-07_11-54-48.png
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662
|
Sat Apr 5 16:13:32 2025 |
TD | Saturday 5 April |
12.00 CARME IE514 ion gauge 4.2e-11 mbar
CARME IE514 OFF
aida08 red coolant line and HDMI cable found disconnected - blue coolant line, network cable and FEE^$ power are still connected
Now re-connected
13.57 DSSSD bias & leakage current - attachment 1
leakage currents high (especially DSSSD#1 and DSSSD#3) cf. most recent values from June 2024 values https://elog.ph.ed.ac.uk/CARME/654
another ion gauge on with line of sight to DSSSDs?
FEE64 power ON
FEE64 temps OK - attachment 2
All system wide checks OK - attachments 3-6
WR timestamps OK - attachment 7
18.00 DSSSD bias OFF
FEE64 power OFF |
| Attachment 1: Screenshot_from_2025-04-05_13-57-06.png
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| Attachment 2: Screenshot_from_2025-04-05_16-00-19.png
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| Attachment 3: Screenshot_from_2025-04-05_16-01-31.png
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| Attachment 4: Screenshot_from_2025-04-05_16-04-22.png
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| Attachment 5: Screenshot_from_2025-04-05_16-04-36.png
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| Attachment 6: Screenshot_from_2025-04-05_16-04-47.png
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| Attachment 7: Screenshot_from_2025-04-05_16-06-41.png
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661
|
Fri Apr 4 10:17:16 2025 |
TD | Friday 4 April |
10.43 Reboot carme-gsi - unable to open a working terminal
Post boot found that it was necessary to manually enable WAN network interface (enp2s0) - perhaps it had been disabled previously?
Started proxy port for remote access via AnyDesk per https://elog.ph.ed.ac.uk/CARME/489 using the command
ssh -L 8080:proxy.gsi.de:8080 carme@atppc02
AnyDesk 978 207 281 now online/available
13.43 carme-gsi moved from 19" rack room to control/counting room (next door)
19" rack room
*yellow* network cable disconnected from YR10/2 patch panel, *green* network cable connected to YR10/2 patch panel
control counting room
*green* network cable connected to carme-gsi p4p1 network interface (connection to CARME network switch at YR09)
network cable connected from carme-gsi enp2s0 network interface (port #2) to Netgear MS510TXM EXPSW3 port (connection to WAN)
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