AIDA GELINA BRIKEN nToF CRIB ISOLDE CIRCE nTOFCapture DESPEC DTAS EDI_PSA 179Ta CARME StellarModelling DCF K40
  CARME, Page 2 of 34  ELOG logo
ID Date Authordown Subject
  370   Tue Aug 9 13:44:16 2022 TD, JMTuesday 9 August
14.00 CARME vacuum c. 1.8e-10 mbar - see attachment 1

open water inlet/outlet taps

NIM bin (MACBs, Ortec 480 Pulser, CAEN N1419ET) switched ON

USB-controlled ac mains relay switched ON - water & interlock LEDs active

Require VETAR2 (previous returned to Nik Kurz) and network switch (currently with AIDA@DESPEC)

Turbo pump ON - normal operation

Ion pumps ON - normal operation

16.30 ML informs us that ambient temperature of CRYRING cave has been increased from c. 16 deg C to c. 21 deg C and that this is likely the cause of the change in vacuum 
pressure in YR09 and the rest of the storage ring.

obtained VETAR2 and crate 

anydesk restarted
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  372   Wed Aug 10 10:30:04 2022 TD, JMWednesday 10 August
09.45 Found CARME electrical power off

      Reset power switch of distribution box to on
      Reset fuse of 19" rack extender board

      One of the SIP power modules may be faulty - others switch on OK


14.00 Checked coolant water flow OK

      Transferred Netgear 24 port Gbit switch from AIDA (S4) to CARME (YR09)

      Re-connected FEE64 RJ45 network cables
      Re-connected nnrpi1 RJ45 network cable
      Re-connected RJ45 network cable (yellow) to bottom left connector of YR09 patch panel 
      
      @CRYRING user control rooms

      Connected RJ45 netwwork cable (yellow) from bottom left connector of patch panel (labelled "1-2->YR10" and "3-4->YR10") to CARME server carme-gsi p4p1 port


Retarted HttpdTcl servers on nnrpi1 and carme-gsi.

Normal 5x FEE64 power up

All system wide checks OK

FEE64 temperatures OK - attachment 1

ASIC settings 
 slow comparator 0x64

Pulser running through aida01-05
Detectors not biased -> lot of noise aida01-04

AIDA stats - attachments 3 & 4

aida05 pulser width ~150 channels FWHM, normal settings, shaping time 8us - attachment 4

See attachments 2-4

Tried changing ADC control register to 0xf in local controls tab -> stops waveform producing data -> no effect on pulser width (slight increase to 160 chn)
fast comparator blanked off (enable disable mask in discriminator control) -> no effect on pulser width
aida05 was ungrounded -> grounded aida05 to the same ground as aida01-04 -> pulser width reduced to 46 chns
Set ADC control register back to 0x0 -> waveforms back -> pulser width reduced to 24 chns
Changed shaping time from 8ms to 1ms -> pulser width increased to 67 chns -> changed back to 8ms shaping time -> returns to 24 chn width
Changed shaping time from 8ms to 2ms -> pulser width increased to 52 chns
Changed shaping time from 2ms to 4ms -> pulser width decreased to 33 chns
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  375   Fri Aug 12 09:06:57 2022 TD, JMNoise tests pt2
10.07 DSSSD bias -100V leakage current -8.65uA

Waveforms and discriminators off, still on clean power supply

stats are ~10k across all fees

aida03 ~ 220
aida04 ~ 205
aida01 ~ 378
aida02 ~ 259
aida05 ~ 40

Grounding removed from all fees except nn bias fee aida04 and aida05. Grounding goes into both adaptor board and fee body

aida01 - no identifiable peak
aida02 - no identifiable peak
aida05 - double peak separated by 70 chn
aida04 - 400 shouldering
aida03 - no identifiable peak

Grounding removed from all fees except nn and pn bias fees aida04, aida01 and aida05. Grounding goes into both adaptor board and fee body

aida01 - 405
aida02 - no identifiable peak
aida05 - double peak
aida04 - 228
aida03 - 417

Grounding removed from all fees except pn bias fee aida01 and aida05. Grounding goes into both adaptor board and fee body

aida01 - 383
aida02 - no identifiable peak
aida05 - 64
aida04 - no identifiable peak
aida03 - no identifiable peak

Grounding on all fees. Grounding goes into adaptor board only

aida01 - no identifiable peak
aida02 - no identifiable peak
aida05 - 63  (wasn't changed)
aida04 - 700
aida03 - 700

Back to previous grounding on all fees

aida01 - 331
aida02 - 226
aida05 - 37
aida04 - 207
aida03 - 214

power cycle

aida01 - 326
aida02 - 238
aida05 - 46
aida04 - 212
aida03 - 195

Waveforms and discriminator back on

Removed test inputs and terminators from all fees, except aida03 (unable to reach) however the lemo is not touching the chamber
See attached waveforms compared to previous elog 32,33

Inserted test input to aida05 only directly from pulser. Width ~ 28

Inserted test input to aida01 only directly from pulser. Width ~ 329

Waveforms and discriminator off -> no impact on aida01 pulser width

Waveforms and discriminator back on

Connected a grounding cable from one of the water cooling pipes to cryring ground

aida01 ~ 205
aida05 ~ 23
aida02 ~ 105
aida03 ~ 71
aida04 ~ 148
Fees with bias attached to them aida01 (+ve) and aida04 (-ve) both show larger widths than there polarity counterpart
waveform screencap 34,35

Fee probe
7.46V left most bar
-6.26V 2nd bar
5.26V 3rd bar
5.26V 4th bar
5.25V 5th bar

Power supply probe
Top -6.05
2nd -6.05
3rd -6.05
4th +6.49
5th -7.78

new Ortec 448 pulser swapped in
aida04 ~ 166
aida05 ~ 21

Attachment 7-11 oscilloscope picture when probing fee relay power supply. Power ON fees connected. Top is attachment 7, bottom (5th) is attachment 11.  
Attachment 12-16 old pulser 
Attachment 17-18 new pulser
Attachment 19-23 oscilloscope picture when probing fee relay power supply. Power OFF fees connected. Top is attachment 19, bottom (5th) is attachment 23.
Attachment 24-28 oscilloscope picture when probing fee relay power supply. Power ON, fees disconnected. Top is attachment 24, bottom (5th) is attachment 28.
Attachment 29,30 probe-scope setup    
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  378   Sun Aug 14 06:50:58 2022 TD, JMSunday 14 August
07.51 DAQ continues files 22Feb/R97

      ASIC settings 2022Jan31-11-52-00
       slow comparator 0x64

      EG&G Ortec 448 Pulser OFF

      All system wide checks OK

Attachment 1 - ADC data item stats

Attachment 2 - FEE64 temps OK

Attachments 3 & 4, 8 & 9 - per FEE64 1.8.W spectra 20us FSR and 200us FSR

Attachments 5 & 6 - per FEE64 1.8.L spectra

Attachment 7 - per FEE64 stat spectra

Leakage current remains 8.36 uA, 100V. 

Bias power OFF, SIP ion pump power back ON. NIM crate powered off. Motors pi and nnrpi1 still on for remote access. 
Compressed air off, water off. Fee relay power off and power cable disconnected. Motors box off. Safety pin for motors reinserted. 

Checked cable harnesses at cryring. 2 good short sections found and left with boxes in cryring. 2 damaged long sections (bad pin and broken ceramic) taken to repair in 
Edinburgh.
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  480   Mon Jan 29 15:32:08 2024 TD, JMMonday 29 January contd.
Test + and test - daisy chain cabling extended from DSSSD #1 to #2 to DSSSD #1 to DSSSD #4
 terminated by 50 Ohm at end of daisy chain

Grounding cabling extended from DSSSD #1 ( only ) to DSSSD #1 to DSSSD #4
 grounding cables daisy-chained between 4x adaptor PCBs of each DSSSD - no inter-DSSSD grounding cables

DSSSD#1 bias cable SHV-Lemo 00.250 ( to p+n bias adaptor PCB )
DSSSD#2 - DSSSD #4 bias cables SHV - 2x Lemo 00.250 ( to p+n/n+n bias adaptor PCBs )

LK1 fitted for DSSSD #1 & #2 n+n Ohmic side bias adaptor PCBs
LK2 not fitted on any adaptor PCBs? to be checked

CAEN N1419ET internal jumper fitted ( non-floating outputs )? to be checked

16.54 DSSSD bias OK - see attachment 1

      FEE64 temperatures - attachment 2
       aida06 ASIC temp low

      System wide checks and WR - attachments 3-6
       global clock status aid04 0x6, aida06 0x4
       multiple FPGA timestamp and WR decoder errors for MACBs 4 and 5 ( of 5 )

       WR timestamps OK for aida01-aida08 ( w/ MACB firmware version 04/20 )

     ADC data item stats - attachment 7
      all rates consistent with 50Hz pulser *except* 
       aida11 global clock fail
       aida07 no boot
       aida16 no power
       aida06 ? 
       aida15 faulty asic #2

     per FEE64 Rate spectra - attachment 8

     per p+n and n+n FEE64 1.8.L spectra - attachments 9-12
      Pulser peak width p+n side 52 ch FWHM ( aida12 ), n+n side 70 ch FWHM ( aida14 )

     per p+n and n+n 1.8.W spectra - 20us FSR - attachments 13-16
Attachment 1: Screenshot_from_2024-01-29_16-54-37.png
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  541   Thu Apr 18 13:34:06 2024 TD, JGThursday 18 April
14.30 


       per FEE64 1.8.L spectra
        aida11 pulser peak width 52 ch FWHM



14.45 EG&G Ortec 448 Pulser OFF

      all stats & histograms zero'd
 
      alpha background


22.00 DSSSD bias and leakage current OK - attachment 10

      FEE64 temperatures OK - attachment 11

      ADC data item stats - attachment 12

      per FEE64 Stat spectra - attachment 13
       Comparison of attachment 9 (per FEE64 Rate spectra with pulser) indicates significant issues (downstream of adaptor PCB) for DSSSD #1
       Possible issues asics #3 aida01 and possible adaptor PCB misalignment aida05
Attachment 1: Screenshot_from_2024-04-18_14-22-41.png
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  262   Wed Feb 23 21:27:29 2022 TD, CNcheck

Motor position ok

Data rate: 1030kbytes/s

T ok

System wide check ok

plots uploaded

 

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  552   Fri May 10 21:23:35 2024 TD, CB, JM20Ne7+ test beam

22.00

Carsten Brandau stopping e-target experiment Unattended beam overnight. No operators watching.

10^5 (nominal) 20Ne7+ at 380keV/u beam available

Carsten reports beam is unstable, often disappearing, and in bunched mode.

4x MSL type TTT14 DSSSDs not moving, locked in out position

Starting CARME MIDAS DAQ ASIC settings 2024Apr24-14.14.03

slow comparator 0x64 E

G&G Ortec 448 Pulser OFF

DSSSD bias & leakage currents - attachment 1

FEE64 temperatures OK - attachment 2

All system wide checks OK, WR timestamps OK - attachment 3

ADC data item stats - attachment 4

Rates dominated by two hot channels aida15 per FEE64 Stat spectra - attachment 5

per FEE64 1.8.L spectra - attachments 6-7 no obvious beam energy peak, continuum of energies from below beam energy to threshold

per FEE64 1.8.W spectra - attachments 8-9

 

22.55 Start data file APR24/R5 Merger, TapeServer etc - attachments 10-12

270k data items/s

 

23:29 Activated CARMESort script. See attachments 13-15.

No obvious beam or signal of any kind. Temperatures OK.

 

00:13 DAQ continues OK. System-wide check OK. Temps OK. Still no clear sign of beam.

 

01:03 Daq continues OK. System wide checks OK, Temps OK.

Only low energies observed in the energy spectrum. Looks a bit like the low energy noise observed in our previous runs with no/very few counts above what would be beam energy (~7.6 MeV)

Note the xy plots are not all orientated correctly (strips are correct in the sort code but root axis need to be flipped - I can;t remember how atm). The part of the plots with counts are those closest to the beam. 

02:00 DAQ continues OK. System wide checks OK. Temps OK.

Spectra still looks the same. I have noticed the right hand side rate is higher than the left. EyEx cut spectrum also looks like much more counts outside of the cut.

03:40

DAQ continues. All checks and temps OK.

I can now see a small peak at 5 MeV in the bottom left dssd. This dssd also has the least number of counts in the low energy continuum.

I have logged back into grafana on x2go to get the number ions in the ring. Attachment 17

04:23 (05:23 EU)

DAQ stopped, merger stopped, tape server stopped. Bias OFF. FEEs turned OFF. Screen shots taken of the monitoring code plots - not yet uploaded.

Windows and servers remain up in case we want to do some more tests in the near future.

Attachment 18 shows beam intensity for total run time from Grafana

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  147   Wed Nov 10 14:41:12 2021 TD RSS + CB (remotely)Wrapping CARME in heating tape
ML reports that baking of the upstream section (gas jet interaction chamber plus e-target) has commenced - initially to 50 deg C to check thermocouples. If OK baking 
temperature will be ramped slowly (which I think means c. 10 deg C per h) to limits established for specific components by the e-target.

Ragan and Oemer are currently threading a 10m heating tape helically around the CARME chamber.

16.20 ML reports baking of upstream section is proceeding OK - currently ramping to 100 deg C at 10 deg C / h.

16.25 RSS reports that he completed the install of the thermocouples this morning and will update the Elog with specific locations of each thermocuple and TC08 channel 
later today.

16:30 All CARME thermocouples <20 C. No temperature changes. Monitor.x left under screen. Please summon with screen -x and dismiss with CTRL+a d

17:40 One CARME thermocouple at 40C (CARME front)
  39   Tue Aug 10 12:22:56 2021 TD RSSTuesday 10 August
Attachments 1-3 - 2 of 4 SAES D2000 installed at same ports used for STFC DL XHV tests
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  40   Wed Aug 11 12:30:40 2021 TD RSSWednesday 11 August
Attachments 1 & 2 - 2x SAES D-2000 re-fitted to side ports
                    all 4x SAES D-2000 now re-fitted to chamber

Will now fit 1x turbo and blank (currently) unused turbo port.

Attachments 3 & 4 - centre 2x78 pin micro-D feedthrough has some pins slightly bent - can probably be safely bent back into position 

ALWAYS check 78-pin feedthroughs for bent/broken pins before fitting connectors/cabling

Attachment 5 - currently unused turbo port

Attachments 6 & 7 - turbo port from above and side

Attachment 8 - turbo + NW16/NW25 adaptor + NW25 s/s hose + scroll pump + turbo controller + CMS52 gauge controller

Note we currently do not have a vent valve or backing line vacuum gauge (both functions provided by leak detector at STFC DL).
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Attachment 8: 20210811_153236.jpg
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  41   Thu Aug 12 09:16:42 2021 TD RSSThursday 12 August
Attachment 1 - IE414/514 feedthrough wiring diagram

Attachments 2 & 3 - IE514 feedthrough connected (cf https://elog.ph.ed.ac.uk/CARME/19 )

14:00 scroll pump start
14:30 turbo pump start
15:16 1.00e-5mbar
16:01 - attachments 4-8 basic vacuum test setup
        turbo @ 0.74A

              Pirani  IE514
              mbar    mbar

12/8/21 14:02 85
12/8/21 14:04 4.8
12/8/21 14:06 0.95
12/8/21 14:08 0.46
12/8/21 14:10 0.30
12/8/21 14:12 0.22
12/8/21 14:16 0.18
12/8/21 14:18 0.15
12/8/21 14:20 0.12
12/8/21 14:22 0.11
12/8/21 14:24 0.10
12/8/21 14:26 0.090
12/8/21 14:28 0.080
12/8/21 14:30 0.075
12/8/21 14:32 0.27
12/8/21 14:34 0.14
12/8/21 14:36 0.10
12/8/21 14:37:20    7.00e-5 
12/8/21 14:38 0.085 5.80e-5
12/8/21 14:40 0.080 4.61e-5
12/8/21 14:42 0.075 3.73e-5
12/8/21 14:44 0.075 3.14e-5
12/8/21 14:46 0.070 2.70e-5 
12/8/21 14:48 0.065 2.42e-5
12/8/21 14:50 0.065 2.16e-5
12/8/21 14:52 0.065 1.97e-5
12/8/21 14:54 0.060 1.81e-5
12/8/21 14:56 0.060 1.70e-5
12/8/21 14:58 0.060 1.57e-5
12/8/21 15:00 0.060 1.47e-5
12/8/21 15:02 0.055 1.39e-5
12/8/21 15:04 0.055 1.31e-5
12/8/21 15:06 0.050 1.26e-5
12/8/21 15:08 0.050 1.20e-5
12/8/21 15:10 0.050 1.14e-5
12/8/21 15:12 0.048 1.09e-5
12/8/21 15:14 0.046 1.04e-5
12/8/21 15:16 0.046 1.00e-5
12/8/21 15:18 0.044 9.65e-6
12/8/21 15:20 0.044 9.31e-6
12/8/21 16:00 0.032 5.28e-6

--------------------------------

13/8/21 08:00 0.0075 3.53e-7
Attachment 1: 20210812_101505.jpg
20210812_101505.jpg
Attachment 2: 20210812_101537.jpg
20210812_101537.jpg
Attachment 3: 20210812_101545.jpg
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Attachment 4: 20210812_160134.jpg
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Attachment 5: 20210812_160158.jpg
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Attachment 6: 20210812_160210.jpg
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Attachment 7: 20210812_160215.jpg
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Attachment 8: 20210812_160222.jpg
20210812_160222.jpg
Attachment 9: IMG_4196.JPG
IMG_4196.JPG
Attachment 10: IMG_4197.JPG
IMG_4197.JPG
Attachment 11: IMG_4198.JPG
IMG_4198.JPG
Attachment 12: scroll_pump.png
scroll_pump.png
Attachment 13: turbo_pump.png
turbo_pump.png
  123   Thu Oct 14 15:54:47 2021 TD RSSThursday 14 October
Attachment 1 - what is function of the 4x c/s holes indicated?


DSSSD install sequence

1 add 136 - 2x78 way cable harnesses to DSSSD mount via strain relief

2 add DSSSD to mount

3 connect 136 D connector

4 install in CARME chamber 

5 connect 2x78 D connectors and strain relief to 2x78 way D connector 
feedthroughs 

Attachment 2- pins of one of the four feedthroughs were damaged. Needs to be replaced.
Attachment 1: IMG_5056.JPG.jpg
IMG_5056.JPG.jpg
Attachment 2: IMG_5053.JPG
IMG_5053.JPG
  126   Sun Oct 17 11:48:48 2021 TD RSSSunday 17 October
Looking downstream the RHS motor assembly has  loose green/yellow (gnd?) see attachment 1

Install blank base plate to trial install in downstream CARME chamber. The rod is just through all of the mounting holes - see attachments 2 & 3

The rod, plate and block are close fitting.

The current position of the TC feedthrough is incompatible wit detector movement- the TC feedthrough should be moved.

Detector baseplate with 1x DSSSD installed - attachments 4 - 6, Cabling length looks OK. 

Should move NEG power and TCs to top & bottom DN40 flanges to avoid conflicts with DSSSDs and cabling.
Attachment 1: 20211017_124717.jpg
20211017_124717.jpg
Attachment 2: 20211017_130436.jpg
20211017_130436.jpg
Attachment 3: 20211017_130447.jpg
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Attachment 4: 20211017_133051.jpg
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Attachment 5: 20211017_133105.jpg
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Attachment 6: 20211017_133229.jpg
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Attachment 7: IMG_5146.JPG
IMG_5146.JPG
Attachment 8: IMG_5145.JPG
IMG_5145.JPG
Attachment 9: IMG_5144.JPG
IMG_5144.JPG
Attachment 10: IMG_5143.JPG
IMG_5143.JPG
Attachment 11: IMG_5142.JPG
IMG_5142.JPG
Attachment 12: IMG_5141.JPG
IMG_5141.JPG
Attachment 13: IMG_5139.JPG
IMG_5139.JPG
Attachment 14: IMG_5140.JPG
IMG_5140.JPG
  304   Sun Feb 27 12:49:44 2022 TD RSSSunday 27 February 07:00-15:00
13.50 Cryostat set point 120K

13.49 Temperatures OK - attachment 1

13:51 System wide checks OK except WR decoder status

		 Base 		Current 	Difference
aida01 fault 	 0xab60 : 	 0xab86 : 	 38  
aida02 fault 	 0x88d3 : 	 0x88f8 : 	 37  
aida03 fault 	 0x23aa : 	 0x23d0 : 	 38  
aida04 fault 	 0x15d7 : 	 0x15fd : 	 38  
aida05 fault 	 0x2f03 : 	 0x2f0f : 	 12  
White Rabbit error counter test result: Passed 0, Failed 5

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

13.56 set point 95K

      stat, 1.8.L & 1.8.W spectra - attachments 2-6
Attachment 1: Screenshot_from_2022-02-27_13-51-26.png
Screenshot_from_2022-02-27_13-51-26.png
Attachment 2: Screenshot_from_2022-02-27_13-53-55.png
Screenshot_from_2022-02-27_13-53-55.png
Attachment 3: Screenshot_from_2022-02-27_13-54-47.png
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Attachment 4: Screenshot_from_2022-02-27_13-55-15.png
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Attachment 5: Screenshot_from_2022-02-27_13-55-55.png
Screenshot_from_2022-02-27_13-55-55.png
Attachment 6: Screenshot_from_2022-02-27_13-59-51.png
Screenshot_from_2022-02-27_13-59-51.png
  479   Mon Jan 29 08:52:07 2024 TD JMMonday 29 January
09.50 CARME IE514 5.1e-11 mbar ( ambient temperature 16 deg C )

10.24 DSSD bias OK - attachment 1

10.40 MACB configuration

      1              2      3      4      5

mode  0x3            0x3    0x3    0x3    0x3

      from VETAR2    from 1 from 1 from 1 from 1
      to 2           aida01 aida05 aida09 aida13
      to 3           :      :      :      :
      to 4           :      :      :      :
      to 5           aida04 aida08 aida12 aida16

WR emulator cables connected to MACB #1 rear panel

DAQ reset and DAQ setup between each test below - the FEE64s were NOT power cycled between tests


      Per https://elog.ph.ed.ac.uk/CARME/478 test WR

      connecting/disconnecting HDMI cable from VETAR2 to MACB level 0 input was tested 20.1.24 per https://elog.ph.ed.ac.uk/CARME/477

      With VETAR2 abd all MACB mode sttings 0x3 observe same WR issues as previously

      Noted clock & sync cables from WR emulator were swapped
      ( pay attention to SMA cables cf. Zybo board *not* NIM module as shown in https://elog.ph.ed.ac.uk/DESPEC/517 )

      Change MACB level 0 mode from 0x3 to 0xd - all other MACBs mode 0x3
      HDMI cabkle from VETAR2 to MACB level 0 input disconnected

      System wide checks - global clocks all fail - see attachments 2-5


11.14 Reduce MAC config to MACB level 0 plus one MACB connected to FEE64s aida01-aida4
      All MACB modes 0x3

      System wide checks aida01-aida04 OK. Same problem observed with WR timestamp for aida01-aida04

      See attachments 6-9

11.22 Reduce MAC config to one MACB connected to FEE64s aida01-aida4
      MACB mode 0x3

      System wide checks aida01-aida04 OK. Same problem observed with WR timestamp for aida01-aida04

      See attachments 10-13

11.26 One MACB config using MACB 2 of 5 in NIM bin connected to FEE64s aida01-aida4
      MACB mode 0x3

      System wide checks aida01-aida04 OK. Same problem observed with WR timestamp for aida01-aida04

      See attachments 14-17

11.36 Connect VETAR2 output directly to aida09

      System wide checks for aida09 OK.Valid WR timestamp appears to be generated.

      See attachments 18-20

      Check NIM bin with MACBs etc
        +/-6V, 12V and 24V lines OK

11.42 Connect VETAR2 to MACB 1 of 5 ( mode 0x3 )
      Connect aida09 to MACB 1 of 5
      Global clock OK. WR decoder status error 0xd reported for aida09. Valid WR timestamp for aida09.

      See attachments 21-24

11.53 Connect VETAR2 to MACB 1 of 5 ( mode 0x3 )
      Connect aida09-aida12 to MACB 1 of 5
      Global clock OK. WR decoder status error 0xd reported for aida09-aida12. WR timestamps for aida09-aida12 very different - aida10 might be correct timestamp?

      See attachments 25-28

11.53 Connect VETAR2 to MACB 2 of 5 ( mode 0x3 )
      Connect aida09-aida12 to MACB 2 of 5
      Global clock OK. WR decoder status error 0xd reported for aida09-aida12. WR timestamps for aida09-aida12 very different - aida10 & 11 approx correct but 11 has 
lower timestamp than 10 so probably not quite right

      See attachments 29-32


15.00 Per https://elog.ph.ed.ac.uk/CARME/478 systematically test 1x MACB configurations to find 'working' MACBs

      Identify 3x MACB modules which produce sensible WR timestamps - all labelled ' firmware version 04/20 '.
      The other 5x MACBs are either unlabelled or labelled unknown.

      MACB configuration now uses 04/20 MACBs for MACBs 1-3 and unlabelled 2xMACBs fpr MACBs 4-5
      aida01-aida08 should produce WR timestamps OK

      Will attempt to update firmwre of 5x MACBs tomorrow pm with NH
Attachment 1: Screenshot_from_2024-01-29_10-24-10.png
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Attachment 2: Screenshot_from_2024-01-29_11-05-18.png
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Attachment 3: Screenshot_from_2024-01-29_11-05-49.png
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Attachment 4: Screenshot_from_2024-01-29_11-08-15.png
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Attachment 5: Screenshot_from_2024-01-29_11-08-41.png
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Attachment 6: Screenshot_from_2024-01-29_11-20-44.png
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Attachment 7: Screenshot_from_2024-01-29_11-21-07.png
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Attachment 8: Screenshot_from_2024-01-29_11-21-29.png
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Attachment 9: Screenshot_from_2024-01-29_11-22-00.png
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Attachment 10: Screenshot_from_2024-01-29_11-28-20.png
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Attachment 11: Screenshot_from_2024-01-29_11-28-40.png
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Attachment 12: Screenshot_from_2024-01-29_11-28-52.png
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Attachment 13: Screenshot_from_2024-01-29_11-29-26.png
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Attachment 14: Screenshot_from_2024-01-29_11-33-16.png
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Attachment 15: Screenshot_from_2024-01-29_11-33-30.png
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Attachment 16: Screenshot_from_2024-01-29_11-33-43.png
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Attachment 17: Screenshot_from_2024-01-29_11-34-15.png
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Attachment 18: Screenshot_from_2024-01-29_11-40-51.png
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Attachment 19: Screenshot_from_2024-01-29_11-41-12.png
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Attachment 20: Screenshot_from_2024-01-29_11-41-59.png
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Attachment 21: Screenshot_from_2024-01-29_11-48-20.png
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Attachment 22: Screenshot_from_2024-01-29_11-48-41.png
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Attachment 23: Screenshot_from_2024-01-29_11-48-58.png
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Attachment 24: Screenshot_from_2024-01-29_11-49-22.png
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Attachment 25: Screenshot_from_2024-01-29_11-57-41.png
Screenshot_from_2024-01-29_11-57-41.png
Attachment 26: Screenshot_from_2024-01-29_11-58-11.png
Screenshot_from_2024-01-29_11-58-11.png
Attachment 27: Screenshot_from_2024-01-29_11-58-25.png
Screenshot_from_2024-01-29_11-58-25.png
Attachment 28: Screenshot_from_2024-01-29_11-59-11.png
Screenshot_from_2024-01-29_11-59-11.png
Attachment 29: Screenshot_from_2024-01-29_12-05-28.png
Screenshot_from_2024-01-29_12-05-28.png
Attachment 30: Screenshot_from_2024-01-29_12-05-59.png
Screenshot_from_2024-01-29_12-05-59.png
Attachment 31: Screenshot_from_2024-01-29_12-06-11.png
Screenshot_from_2024-01-29_12-06-11.png
Attachment 32: Screenshot_from_2024-01-29_12-07-03.png
Screenshot_from_2024-01-29_12-07-03.png
  258   Wed Feb 23 18:58:12 2022 TD CNWednesday 23 February 15.00-23.00 shift

Assorted screenshots of the CARME, CRYRING and gas jet target control systems in operation

Attachment 1 - detector motion controls

Attachment 2 - gas jet target pressures (blue proxy for target density, red proxy for gas load to CRYRING)

Attachment 3 - Schottky probe monitor of beam

Attachment 4 - CRYRING controls monitor

Attachment 5 - CRYRING vacuum pressures

Attachment 6 - CRYRING beam position and profile monitor 
Attachment 1: 20220223_195402.jpg
20220223_195402.jpg
Attachment 2: 20220223_195349.jpg
20220223_195349.jpg
Attachment 3: 20220223_195208.jpg
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Attachment 4: 20220223_195203.jpg
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Attachment 5: 20220223_195142.jpg
20220223_195142.jpg
Attachment 6: 20220223_195133.jpg
20220223_195133.jpg
  260   Wed Feb 23 20:06:43 2022 TD CNE141 kinematics
Assuming DSSSD is 1000um thick we can expect to observe protons for E_lab=11MeV as follows

14N(d,p)15N(gs)   E_p=5.4MeV
14N(d,p)15N(5.3)  E_p=8.0MeV
Attachment 1: E141_kinematics.txt
________________________________________________________________________________

   Reaction: 14N(2H,1H)15N

          A:          14          2          1         15
          Z:           7          1          1          7
  Mass(amu):   14.003074   2.014102   1.007825  15.000109
 Error(keV):       0.001      0.000      0.000      0.001
     Origin:
     Status:

         Q =    8.6087 +/-   0.0000 MeV

________________________________________________________________________________

 Enter reaction: 14n(2h,4he)

________________________________________________________________________________

   Reaction: 14N(2H,4He)12C

          A:          14          2          4         12
          Z:           7          1          2          6
  Mass(amu):   14.003074   2.014102   4.002603  12.000000
 Error(keV):       0.001      0.000      0.000      0.000
     Origin:
     Status:

         Q =   13.5742 +/-   0.0000 MeV

________________________________________________________________________________


 Medium: si

                         density:  2.33000     g/cm**3
    Molecule:
             1 atom(s) of charge:  14.0   mass:  28.0860 amu

    Average ionization potential: 0.172253E-03 MeV
                Electron density: 0.699429     *10**24/cm**3
                  Average charge:  14.0000

 Ion: 1h
                          charge:   1.0   mass:  1.0000 amu

  Energy(MeV)   dE/dx(MeV/mm) dE/dx(MeV.cm**2/mg)  Range(mm)  Range(mg/cm**2)

    1.00000        41.7638       0.179244       0.168683E-01    3.93032
    2.00000        26.4413       0.113482       0.479716E-01    11.1774
    3.00000        19.8139       0.850383E-01   0.920942E-01    21.4580
    4.00000        16.0296       0.687967E-01   0.148410        34.5796
    5.00000        13.5554       0.581779E-01   0.216350        50.4095
    6.00000        11.7994       0.506413E-01   0.295737        68.9066
    7.00000        10.4828       0.449906E-01   0.385601        89.8451
    8.00000        9.69841       0.416241E-01   0.486197        113.284
    9.00000        8.85218       0.379922E-01   0.594047        138.413
    10.0000        8.15487       0.349994E-01   0.712066        165.911
    11.0000        7.56942       0.324868E-01   0.839325        195.563
    12.0000        7.07026       0.303445E-01   0.976032        227.415
    13.0000        6.63918       0.284943E-01    1.12211        261.451
    14.0000        6.26279       0.268789E-01    1.27739        297.632
    15.0000        5.93105       0.254552E-01    1.44140        335.846
    16.0000        5.63627       0.241900E-01    1.61476        376.239
    17.0000        5.37246       0.230577E-01    1.79614        418.501
    18.0000        5.13484       0.220380E-01    1.98680        462.925
    19.0000        4.91963       0.211143E-01    2.18570        509.269
    20.0000        4.72370       0.202734E-01    2.39308        557.587


Medium: si

                         density:  2.33000     g/cm**3
    Molecule:
             1 atom(s) of charge:  14.0   mass:  28.0860 amu

    Average ionization potential: 0.172253E-03 MeV
                Electron density: 0.699429     *10**24/cm**3
                  Average charge:  14.0000

 Ion: 4he
                          charge:   2.0   mass:  4.0000 amu

  Energy(MeV)   dE/dx(MeV/mm) dE/dx(MeV.cm**2/mg)  Range(mm)  Range(mg/cm**2)

    1.00000        257.862        1.10670       0.382916E-02   0.892195
    2.00000        217.610       0.933946       0.970542E-02    2.26136
    3.00000        184.248       0.790762       0.147204E-01    3.42986
    4.00000        159.425       0.684229       0.205680E-01    4.79233
    5.00000        140.613       0.603489       0.272616E-01    6.35195
    6.00000        125.944       0.540534       0.347858E-01    8.10510
    7.00000        114.206       0.490155       0.431299E-01    10.0493
    8.00000        104.603       0.448940       0.522753E-01    12.1802
    9.00000        96.5996       0.414591       0.622123E-01    14.4955
    10.0000        89.8241       0.385511       0.729664E-01    17.0012
    11.0000        84.0110       0.360562       0.844573E-01    19.6786
    12.0000        78.9663       0.338911       0.967262E-01    22.5372
    13.0000        74.5447       0.319934       0.109668        25.5527
    14.0000        70.6356       0.303157       0.123440        28.7614
    15.0000        67.1531       0.288211       0.137756        32.0971
    16.0000        64.0297       0.274806       0.152904        35.6267
    17.0000        61.2114       0.262710       0.168794        39.3289
    18.0000        58.6547       0.251737       0.185593        43.2431
    19.0000        56.3239       0.241733       0.202664        47.2208
    20.0000        54.1897       0.232574       0.220839        51.4555

______________________________________________________________________________________________________________________________

               Reaction: 14N(2H,2H)14N

                      A:          14          2          2         14
                      Z:           7          1          1          7
              Mass(amu):   14.003074   2.014102   2.014102  14.003074
             Error(keV):       0.001      0.000      0.000      0.001
                 Origin:
                 Status:

                  Q(gs):    0.0000 +/-   0.0001 MeV

  Projectile lab energy:   11.000 MeV
              CM energy:    9.614 MeV
      Excitation energy:    0.000 MeV
       Reaction Q-value:    0.000 MeV
     Reaction threshold:    0.000 MeV

                 Particle 3                               Particle 4                           Non-relativistic Jacobians
           ( scattered/ejectile )                         ( recoil )                                           Ejectile Ejectile
                                                                                               Ejectile Recoil dOmega/  dOmega/
  Lab    CM       Lab   Lab     Lab    dOmega      Lab    CM       Lab   Lab     Lab    dOmega  dOmega  dOmega Recoil   Recoil
 Angle  Angle   Energy  Beta    ToF    Lab/CM     Angle  Angle   Energy  Beta    ToF    Lab/CM  Lab/CM  Lab/CM dOmega   dOmega
 (deg)  (deg)    (MeV)        (ns/cm)  ratio      (deg)  (deg)    (MeV)        (ns/cm)  ratio                  Lab/Lab  CM/Lab

  0.00   0.00   11.000 0.1078   0.309  0.0000    NaN    180.00    0.000 NaN    NaN     NaN      0.0000 NaN     NaN     NaN
 10.00  11.44   10.952 0.1076   0.310  0.7665     84.28 168.56    0.048 0.0027  12.281  2.5089  0.7665  2.5084  0.3056  0.3987
 20.00  22.83   10.810 0.1069   0.312  0.7758     78.58 157.17    0.190 0.0054   6.183  1.2631  0.7758  1.2628  0.6144  0.7919
 30.00  34.14   10.582 0.1058   0.315  0.7915     72.93 145.86    0.418 0.0080   4.169  0.8516  0.7915  0.8515  0.9295  1.1744
 40.00  45.33   10.281 0.1043   0.320  0.8134     67.33 134.67    0.719 0.0105   3.176  0.6488  0.8134  0.6487  1.2539  1.5416
 50.00  56.36    9.920 0.1024   0.326  0.8416     61.82 123.64    1.080 0.0129   2.592  0.5294  0.8415  0.5294  1.5897  1.8891
 60.00  67.19    9.517 0.1003   0.332  0.8758     56.40 112.81    1.483 0.0151   2.212  0.4518  0.8757  0.4518  1.9384  2.2135
 70.00  77.80    9.089 0.0981   0.340  0.9158     51.10 102.20    1.911 0.0171   1.949  0.3981  0.9157  0.3980  2.3005  2.5123
 80.00  88.18    8.654 0.0957   0.348  0.9610     45.91  91.82    2.346 0.0190   1.759  0.3593  0.9609  0.3593  2.6748  2.7835
 90.00  98.31    8.228 0.0933   0.357  1.0107     40.84  81.69    2.772 0.0206   1.618  0.3305  1.0106  0.3304  3.0584  3.0263
100.00 108.18    7.822 0.0910   0.366  1.0636     35.91  71.82    3.178 0.0221   1.511  0.3086  1.0635  0.3086  3.4459  3.2402
110.00 117.80    7.448 0.0888   0.375  1.1181     31.10  62.20    3.552 0.0233   1.430  0.2919  1.1181  0.2919  3.8300  3.4256
120.00 127.18    7.113 0.0868   0.384  1.1724     26.41  52.82    3.887 0.0244   1.367  0.2791  1.1724  0.2791  4.2008  3.5832
130.00 136.35    6.825 0.0851   0.392  1.2242     21.82  43.65    4.175 0.0253   1.319  0.2693  1.2242  0.2693  4.5465  3.7140
140.00 145.33    6.585 0.0836   0.399  1.2711     17.34  34.67    4.415 0.0260   1.282  0.2619  1.2711  0.2619  4.8542  3.8189
150.00 154.14    6.398 0.0824   0.405  1.3107     12.93  25.86    4.602 0.0266   1.256  0.2565  1.3107  0.2565  5.1107  3.8993
160.00 162.83    6.263 0.0815   0.409  1.3408      8.58  17.17    4.737 0.0269   1.238  0.2528  1.3408  0.2528  5.3039  3.9559
170.00 171.44    6.182 0.0810   0.412  1.3596      4.28   8.56    4.818 0.0272   1.228  0.2507  1.3596  0.2507  5.4241  3.9896
180.00 180.00    6.155 0.0808   0.413  0.0000      0.00   0.00    4.845 0.0272   1.224  0.0000  0.0000  0.0000  5.4649 *******

______________________________________________________________________________________________________________________________


               Reaction: 14N(2H,2H)14N

                      A:          14          2          2         14
                      Z:           7          1          1          7
              Mass(amu):   14.003074   2.014102   2.014102  14.003074
             Error(keV):       0.001      0.000      0.000      0.001
                 Origin:
                 Status:

                  Q(gs):    0.0000 +/-   0.0001 MeV

  Projectile lab energy:    3.000 MeV
              CM energy:    2.623 MeV
      Excitation energy:    0.000 MeV
       Reaction Q-value:    0.000 MeV
     Reaction threshold:    0.000 MeV

                 Particle 3                               Particle 4                           Non-relativistic Jacobians
           ( scattered/ejectile )                         ( recoil )                                           Ejectile Ejectile
                                                                                               Ejectile Recoil dOmega/  dOmega/
  Lab    CM       Lab   Lab     Lab    dOmega      Lab    CM       Lab   Lab     Lab    dOmega  dOmega  dOmega Recoil   Recoil
 Angle  Angle   Energy  Beta    ToF    Lab/CM     Angle  Angle   Energy  Beta    ToF    Lab/CM  Lab/CM  Lab/CM dOmega   dOmega
 (deg)  (deg)    (MeV)        (ns/cm)  ratio      (deg)  (deg)    (MeV)        (ns/cm)  ratio                  Lab/Lab  CM/Lab

  0.00   0.00    3.000 0.0565   0.591  0.0000    NaN    180.00    0.000 0.0000 Inf     NaN      0.0000 NaN     NaN     NaN
 10.00  11.43    2.987 0.0564   0.592  0.7672     84.28 168.57    0.013 0.0014  23.541  2.5099  0.7672  2.5098  0.3057  0.3984
 20.00  22.82    2.948 0.0560   0.596  0.7765     78.59 157.18    0.052 0.0028  11.851  1.2636  0.7765  1.2635  0.6146  0.7915
 30.00  34.13    2.886 0.0554   0.602  0.7921     72.93 145.87    0.114 0.0042   7.991  0.8519  0.7921  0.8519  0.9298  1.1738
 40.00  45.31    2.804 0.0546   0.611  0.8139     67.34 134.69    0.196 0.0055   6.087  0.6490  0.8139  0.6490  1.2541  1.5408
 50.00  56.33    2.706 0.0537   0.622  0.8420     61.83 123.67    0.294 0.0067   4.967  0.5296  0.8420  0.5296  1.5899  1.8882
 60.00  67.16    2.596 0.0526   0.635  0.8761     56.42 112.84    0.404 0.0079   4.239  0.4520  0.8761  0.4520  1.9384  2.2126
 70.00  77.78    2.480 0.0514   0.649  0.9160     51.11 102.22    0.520 0.0089   3.735  0.3982  0.9160  0.3982  2.3003  2.5113
 80.00  88.15    2.361 0.0501   0.665  0.9611     45.92  91.85    0.639 0.0099   3.371  0.3594  0.9610  0.3594  2.6742  2.7826
 90.00  98.28    2.245 0.0489   0.682  1.0106     40.86  81.72    0.755 0.0108   3.100  0.3305  1.0105  0.3305  3.0572  3.0254
100.00 108.15    2.135 0.0477   0.700  1.0633     35.92  71.85    0.865 0.0115   2.896  0.3087  1.0632  0.3087  3.4442  3.2393
110.00 117.78    2.033 0.0465   0.717  1.1177     31.11  62.22    0.967 0.0122   2.739  0.2920  1.1176  0.2920  3.8277  3.4248
120.00 127.16    1.941 0.0455   0.734  1.1718     26.42  52.84    1.059 0.0127   2.618  0.2791  1.1717  0.2791  4.1977  3.5824
130.00 136.33    1.863 0.0445   0.749  1.2234     21.83  43.67    1.137 0.0132   2.526  0.2693  1.2234  0.2693  4.5427  3.7132
140.00 145.31    1.797 0.0437   0.763  1.2701     17.34  34.69    1.203 0.0136   2.457  0.2619  1.2701  0.2619  4.8497  3.8183
150.00 154.13    1.746 0.0431   0.774  1.3096     12.94  25.87    1.254 0.0139   2.406  0.2565  1.3096  0.2565  5.1056  3.8987
160.00 162.82    1.710 0.0427   0.782  1.3396      8.59  17.18    1.290 0.0141   2.372  0.2528  1.3396  0.2528  5.2984  3.9553
170.00 171.43    1.688 0.0424   0.787  1.3583      4.28   8.57    1.312 0.0142   2.352  0.2507  1.3583  0.2507  5.4183  3.9890
180.00 NaN       1.680 0.0423   0.789 NaN          0.00 NaN       1.320 0.0142   2.345 NaN     NaN     NaN     NaN     NaN

______________________________________________________________________________________________________________________________


______________________________________________________________________________________________________________________________

               Reaction: 14N(2H,1H)15N

                      A:          14          2          1         15
                      Z:           7          1          1          7
              Mass(amu):   14.003074   2.014102   1.007825  15.000109
             Error(keV):       0.001      0.000      0.000      0.001
                 Origin:
                 Status:

                  Q(gs):    8.6087 +/-   0.0001 MeV

  Projectile lab energy:   11.000 MeV
              CM energy:    9.614 MeV
      Excitation energy:    0.000 MeV
       Reaction Q-value:    8.609 MeV
     Reaction threshold:    0.000 MeV

                 Particle 3                               Particle 4                           Non-relativistic Jacobians
           ( scattered/ejectile )                         ( recoil )                                           Ejectile Ejectile
                                                                                               Ejectile Recoil dOmega/  dOmega/
  Lab    CM       Lab   Lab     Lab    dOmega      Lab    CM       Lab   Lab     Lab    dOmega  dOmega  dOmega Recoil   Recoil
 Angle  Angle   Energy  Beta    ToF    Lab/CM     Angle  Angle   Energy  Beta    ToF    Lab/CM  Lab/CM  Lab/CM dOmega   dOmega
 (deg)  (deg)    (MeV)        (ns/cm)  ratio      (deg)  (deg)    (MeV)        (ns/cm)  ratio                  Lab/Lab  CM/Lab

  0.00   0.00   19.605 0.2012   0.166  0.0000      0.00 180.00    0.004 0.0008  43.955  0.0000  0.0000  0.0000 NaN     NaN
 10.00  10.72   19.562 0.2010   0.166  0.8712     67.67 169.28    0.047 0.0026  12.887 -4.9755  0.8712 -4.9759 -0.1751 -0.2010
 20.00  21.42   19.435 0.2004   0.166  0.8767     70.68 158.58    0.173 0.0050   6.697  0.2448  0.8767  0.2446  3.5841  4.0882
 30.00  32.08   19.231 0.1994   0.167  0.8858     68.27 147.92    0.378 0.0074   4.534  0.5498  0.8858  0.5496  1.6117  1.8195
 40.00  42.67   18.956 0.1980   0.168  0.8984     64.47 137.33    0.653 0.0097   3.451  0.5224  0.8984  0.5223  1.7199  1.9144
 50.00  53.18   18.623 0.1963   0.170  0.9143     60.13 126.82    0.986 0.0119   2.808  0.4645  0.9142  0.4644  1.9686  2.1533
 60.00  63.60   18.244 0.1943   0.172  0.9331     55.55 116.40    1.365 0.0140   2.387  0.4130  0.9330  0.4129  2.2595  2.4218
 70.00  73.90   17.834 0.1922   0.174  0.9544     50.86 106.10    1.775 0.0159   2.093  0.3717  0.9543  0.3717  2.5676  2.6905
 80.00  84.09   17.406 0.1899   0.176  0.9778     46.13  95.91    2.202 0.0178   1.879  0.3393  0.9777  0.3393  2.8820  2.9477
 90.00  94.15   16.977 0.1876   0.178  1.0027     41.39  85.85    2.632 0.0194   1.719  0.3138  1.0026  0.3138  3.1954  3.1870
100.00 104.09   16.558 0.1854   0.180  1.0284     36.67  75.91    3.051 0.0209   1.596  0.2937  1.0283  0.2937  3.5015  3.4050
110.00 113.90   16.161 0.1832   0.182  1.0541     31.98  66.10    3.447 0.0222   1.502  0.2778  1.0540  0.2778  3.7938  3.5995
120.00 123.59   15.798 0.1812   0.184  1.0789     27.32  56.41    3.810 0.0233   1.429  0.2653  1.0788  0.2653  4.0660  3.7690
130.00 133.18   15.477 0.1794   0.186  1.1019     22.70  46.82    4.131 0.0243   1.372  0.2556  1.1018  0.2556  4.3114  3.9129
140.00 142.67   15.206 0.1778   0.188  1.1222     18.11  37.33    4.403 0.0251   1.329  0.2481  1.1222  0.2481  4.5233  4.0308
150.00 152.07   14.989 0.1766   0.189  1.1391     13.55  27.93    4.620 0.0257   1.297  0.2426  1.1390  0.2426  4.6955  4.1224
160.00 161.42   14.831 0.1757   0.190  1.1516      9.02  18.58    4.777 0.0261   1.276  0.2388  1.1516  0.2388  4.8228  4.1878
170.00 170.72   14.736 0.1751   0.190  1.1594      4.51   9.28    4.873 0.0264   1.263  0.2366  1.1594  0.2366  4.9010  4.2270
180.00 NaN      14.704 0.1749   0.191 NaN          0.00 NaN       4.905 0.0265   1.259 NaN     NaN     NaN     NaN     NaN

______________________________________________________________________________________________________________________________


               Reaction: 14N(2H,1H)15N

                      A:          14          2          1         15
                      Z:           7          1          1          7
              Mass(amu):   14.003074   2.014102   1.007825  15.000109
             Error(keV):       0.001      0.000      0.000      0.001
                 Origin:
                 Status:

                  Q(gs):    8.6087 +/-   0.0001 MeV

  Projectile lab energy:    3.000 MeV
              CM energy:    2.623 MeV
      Excitation energy:    0.000 MeV
       Reaction Q-value:    8.609 MeV
     Reaction threshold:    0.000 MeV

                 Particle 3                               Particle 4                           Non-relativistic Jacobians
           ( scattered/ejectile )                         ( recoil )                                           Ejectile Ejectile
                                                                                               Ejectile Recoil dOmega/  dOmega/
  Lab    CM       Lab   Lab     Lab    dOmega      Lab    CM       Lab   Lab     Lab    dOmega  dOmega  dOmega Recoil   Recoil
 Angle  Angle   Energy  Beta    ToF    Lab/CM     Angle  Angle   Energy  Beta    ToF    Lab/CM  Lab/CM  Lab/CM dOmega   dOmega
 (deg)  (deg)    (MeV)        (ns/cm)  ratio      (deg)  (deg)    (MeV)        (ns/cm)  ratio                  Lab/Lab  CM/Lab

  0.00 NaN      11.547 0.1554   0.215 NaN        180.00 NaN       0.062 0.0030  11.216 NaN     NaN     NaN     NaN     NaN
 10.00  10.48   11.530 0.1553   0.215  0.9119    146.83 169.52    0.079 0.0034   9.951  8.3535  0.9119  8.3535  0.1092  0.1197
 20.00  20.94   11.481 0.1550   0.215  0.9158    122.63 159.06    0.128 0.0043   7.793  4.4681  0.9158  4.4681  0.2050  0.2238
 30.00  31.37   11.400 0.1544   0.216  0.9221    105.93 148.63    0.208 0.0055   6.108  2.5075  0.9221  2.5074  0.3678  0.3988
 40.00  41.77   11.292 0.1537   0.217  0.9308     93.50 138.23    0.317 0.0067   4.956  1.5952  0.9308  1.5951  0.5836  0.6269
 50.00  52.10   11.160 0.1528   0.218  0.9417     83.43 127.90    0.449 0.0080   4.163  1.1310  0.9417  1.1309  0.8327  0.8842
 60.00  62.38   11.009 0.1518   0.220  0.9546     74.75 117.62    0.599 0.0093   3.601  0.8690  0.9545  0.8690  1.0985  1.1508
 70.00  72.58   10.845 0.1507   0.221  0.9690     66.96 107.42    0.764 0.0105   3.190  0.7077  0.9690  0.7077  1.3691  1.4130
 80.00  82.70   10.672 0.1495   0.223  0.9847     59.76  97.30    0.937 0.0116   2.880  0.6016  0.9846  0.6016  1.6368  1.6623
 90.00  92.75   10.496 0.1483   0.225  1.0012     52.99  87.25    1.112 0.0126   2.644  0.5281  1.0011  0.5281  1.8958  1.8936
100.00 102.70   10.324 0.1471   0.227  1.0180     46.52  77.30    1.285 0.0136   2.460  0.4754  1.0180  0.4753  2.1416  2.1037
110.00 112.58   10.160 0.1459   0.229  1.0347     40.29  67.42    1.449 0.0144   2.316  0.4365  1.0347  0.4365  2.3704  2.2909
120.00 122.38   10.008 0.1449   0.230  1.0506     34.24  57.62    1.601 0.0151   2.204  0.4075  1.0506  0.4075  2.5783  2.4541
130.00 132.10    9.872 0.1439   0.232  1.0653     28.34  47.90    1.736 0.0158   2.116  0.3857  1.0653  0.3857  2.7618  2.5925
140.00 141.76    9.757 0.1431   0.233  1.0782     22.55  38.24    1.852 0.0163   2.049  0.3696  1.0782  0.3696  2.9175  2.7060
150.00 151.37    9.665 0.1424   0.234  1.0887     16.84  28.63    1.944 0.0167   2.000  0.3579  1.0887  0.3579  3.0422  2.7943
160.00 160.94    9.597 0.1419   0.235  1.0966     11.19  19.06    2.012 0.0170   1.966  0.3500  1.0966  0.3500  3.1334  2.8573
170.00 170.48    9.556 0.1416   0.236  1.1015      5.59   9.52    2.053 0.0171   1.946  0.3454  1.1015  0.3454  3.1889  2.8951
180.00 NaN       9.542 0.1415   0.236 NaN          0.00 NaN       2.067 0.0172   1.940 NaN     NaN     NaN     NaN     NaN

______________________________________________________________________________________________________________________________


______________________________________________________________________________________________________________________________

... 144 more lines ...
  502   Fri Feb 9 11:58:04 2024 TD + CB, JM, AR, NH, ABRun10 contd, Run11
12.46 DAQ continues G22-88/R10_14

      c. 20MeV 16O2+ + 4He 

      DSSSD bias OK - attachment 1
      ambient temperature 17.7 deg C ( c. 1deg C increase cf. earlier this week )

      FEE64 temperatures OK - attachment 2

      All system wide checks OK
      WR timestamp control OK - attachment 3

      ADC data item stats - attachment 4
      FEE64 rates c. 0Hz except 'hot' channels aida01 ( 71k ) and aida15 ( 8k )

      per FEE64 Rate and Stat spectra - attachments 5-8
       events ( beam? ) aida01 asic #4 and aida04 asic #4 ( c. 200k per ASIC channel )
       
      per FEE64 1.8.L spectra - attachments 9-10
       most spectra showing background and, possibly, a small amount of scattered beam?

      per FEE64 1.8.W spectra - 20us FSR - attachments 11-12

      aida04 3*L and 4*L spectra - attachments 13-15
       distribution by strip # - uniform across asic# #4, continuing across asic #3 with abrupt fall off c. channel 9
       not Rutherford - more consistent halo/beam scattering?
       what are the current lab angles subtended by the DSSSDs?
   
      Rutherford cross section for 20MeV 16O+4He



               Reaction: 4He(16O,16O)4He

                      A:           4         16         16          4
                      Z:           2          8          8          2
              Mass(amu):    4.002603  15.994915  15.994915   4.002603
             Error(keV):       0.001      0.002      0.002      0.001
                 Origin:
                 Status:

  Projectile lab energy:   20.000 MeV
              CM energy:    4.003 MeV

                     Particle 3                                 Particle 4
                   ( scattered )                                ( recoil )

  Lab         Cross Section         CM    Lab/CM    Lab        Lab      Lab
 Angle      Lab           CM       Angle   Ratio   Energy     Angle    Energy
 (deg)           (mb/sr)           (deg)           (MeV)      (deg)    (MeV)

  0.00 NaN          Inf            0.000 NaN       20.000     90.000    0.000
  1.00 0.143028E+09 0.572301E+07   4.999   0.040   19.976     87.500    0.024
  2.00 0.894079E+07  356425.      10.017   0.040   19.902     84.992    0.098
  3.00 0.176669E+07  69982.6      15.072   0.040   19.780     82.464    0.220
  4.00  559329.      21951.4      20.186   0.039   19.607     79.907    0.393
  5.00  229335.      8887.05      25.382   0.039   19.382     77.309    0.618
  6.00  110782.      4221.76      30.690   0.038   19.103     74.655    0.897
  7.00  59959.1      2235.75      36.144   0.037   18.768     71.928    1.232
  8.00  35299.6      1279.52      41.790   0.036   18.371     69.105    1.629
  9.00  22192.2      775.052      47.692   0.035   17.907     66.154    2.093
 10.00  14729.2      489.347      53.941   0.033   17.366     63.029    2.634
 11.00  10261.1      317.919      60.685   0.031   16.732     59.658    3.268
 12.00  7514.20      209.725      68.185   0.028   15.976     55.907    4.024
 13.00  5900.47      137.756      77.018   0.023   15.035     51.491    4.965
 14.00  5693.43      85.2271      89.184   0.015   13.688     45.408    6.312

 Maximum lab scattering angle (  14.49 deg ) exceeded

________________________________________________________________________________



      aida01 4*L spectra - attachments 19-23
       channels 0-8 - high stats structure(s) at low energy
       channels 9-16 - high energy peak cf. aida04 asic #4 spectra

      Merger, Merger stats, TapeServer - attachments 16-18

Started Run 11 with beam ON. 

We observe the same pattern of counts in DSSD0 (Top left detector) but not in DSSD1,2,3 (attachment 25). Moving in the left arm with the pneumatic we see a large drop in 
the rate on DSSD0 to essentially zero. The beam on the CRYRING monitor appears to disappear. 
When we move the right pneumatic IN, we observe an increase in the number of counts in the bottom-left part of the detector. The position is likely to be a mistake in the 
strip assignment.  
No increase observed in the leakage current. Will try systematically tomorrow.

Beam position monitoring from the CRYRING are shown in attachments 25-27
Attachment 1: Screenshot_from_2024-02-09_12-45-57.png
Screenshot_from_2024-02-09_12-45-57.png
Attachment 2: Screenshot_from_2024-02-09_12-46-32.png
Screenshot_from_2024-02-09_12-46-32.png
Attachment 3: Screenshot_from_2024-02-09_12-46-59.png
Screenshot_from_2024-02-09_12-46-59.png
Attachment 4: Screenshot_from_2024-02-09_12-47-37.png
Screenshot_from_2024-02-09_12-47-37.png
Attachment 5: Screenshot_from_2024-02-09_12-47-59.png
Screenshot_from_2024-02-09_12-47-59.png
Attachment 6: Screenshot_from_2024-02-09_12-48-59.png
Screenshot_from_2024-02-09_12-48-59.png
Attachment 7: Screenshot_from_2024-02-09_12-49-17.png
Screenshot_from_2024-02-09_12-49-17.png
Attachment 8: Screenshot_from_2024-02-09_12-49-39.png
Screenshot_from_2024-02-09_12-49-39.png
Attachment 9: Screenshot_from_2024-02-09_12-50-18.png
Screenshot_from_2024-02-09_12-50-18.png
Attachment 10: Screenshot_from_2024-02-09_12-51-04.png
Screenshot_from_2024-02-09_12-51-04.png
Attachment 11: Screenshot_from_2024-02-09_12-51-48.png
Screenshot_from_2024-02-09_12-51-48.png
Attachment 12: Screenshot_from_2024-02-09_12-52-25.png
Screenshot_from_2024-02-09_12-52-25.png
Attachment 13: Screenshot_from_2024-02-09_12-54-05.png
Screenshot_from_2024-02-09_12-54-05.png
Attachment 14: Screenshot_from_2024-02-09_12-56-04.png
Screenshot_from_2024-02-09_12-56-04.png
Attachment 15: Screenshot_from_2024-02-09_12-56-20.png
Screenshot_from_2024-02-09_12-56-20.png
Attachment 16: Screenshot_from_2024-02-09_12-56-52.png
Screenshot_from_2024-02-09_12-56-52.png
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  1   Mon Aug 17 08:16:16 2020 TDCARME Elog
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