AIDA GELINA BRIKEN nToF CRIB ISOLDE CIRCE nTOFCapture DESPEC DTAS EDI_PSA 179Ta CARME StellarModelling DCF K40 MONNET
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ID Date Author Subject
  12   Sat Feb 28 08:59:14 2026 SB, TD, FGIR53
start: 16:14:44 27.2.26
stop: 08:38:26 2.3.26
blocks: 48895

no change from R52
  11   Fri Feb 27 15:17:59 2026 SB, TD, FGIR52
Start: 15:06:06 GMT
Stop: 16:13:45
Blocks: 875

Sample: NaCl + Au Frame #4
Beam on target, 2.25 MeV neutron energy, 10 uA protons on LiF 410 ug/cm2 target
Shadow cone, copper rod, 30 cm
Pulser: frequency 20 Hz, amplitude 5 V, other settings per R51
Upstream detector, preamp A, S9418#1
Downstream detector, preamp B, S9418#2

All RAL109 LLD 20mV

DAQ triggers c. 44Hz, accepted c. 40Hz

15.57.21 CET Stopped moderated BF3 monitor ABCD acquisition
Digitizer reconfiguration
15.57.31 Started moderated BF3 monitor ABCD acquisition

15.57.52 Stopped moderated BF3 monitor ABCD acquisition
Digitizer reconfiguration
15.57.56 Started moderated BF3 monitor ABCD acquisition

R52 stopped to permit change to BF3 counter DAQ configuration
  10   Fri Feb 27 14:38:28 2026 SB, TD, FGIR51
start: 14:31:03 (w23 is set to GMT)
stop: 14:38:09
blocks: 98

Pulser walkthrough - amplitudes 5.0-1.0 @ 1.0 step

Attachment 1 - screenshot of all 64x ADC spectra with common x/y-scales
               n+n Ohmic strips lower resolution cf. most p+n junction strips - increase DSSSD bias?
  8   Fri Feb 27 12:41:34 2026 SB, TD, FGIFriday 27 February 2026
BNC PB-5 settings
Amplitude 5.0V
Attenuator x10
Decay time 1ms
Polarity +
Frequency 20Hz
Delay MIN (250ns)


Silena 7710 Quad Bias
Channel 1 connected to preamp A, channel 2 to preamp B
DSSSD#1 (preamp A) bias -70V I_L -0.11uA
DSSSD#2 (preamp B) bias -70V I_L -0.10uA


CAEN V560 Scaler
Channel
0  Triggers
1  Triggers accepted (STFC DL SAC Mon 2 output )
2  Clock (1kHz) 
3  Pulser (positive NIM logic output -> negative NIM output via Phillips 794)
4
 :
 :
9  OR DSSSD#1 p+n strips 0-15
10 OR DSSSD#1 n+n strips 0-15
11 OR DSSSD#2 p+n strips 0-15
12 OR DSSSD#2 n+n strips 0-15


CAEN V560 scaler channels 0-4 read per event

DAQ Trigger
DSSSD#1 n+n strips OR DSSSD#2 p+n strips OR DSSSD#2 n+n strips (LeCroy 429A)
DAQ trigger re-shaped from c. 100ns to c. 1us by Phillips 794

Logic cable #4 appears to kill 48-way OR logic module - workaround - cable 4 disconnected - scaler #9 no reading 


Silena 9418/6V ADC settings
RTP 0 (2us)
LLD 6 (48 channels)


No ADC data from 3 channels
S9418#1.adc14
S9418#2.adc8
S9418#2.adc9

All other channels appear to be OK
Pulser peak width c. 7 ch FWHM p+n strips, c. 8 ch FWHM n+n strips
See attachments 8-11

RAl109 amplifier output DSSSD#1 p+n strip 0 - attachments 1, 2 and 4 - beam OFF, no significant extrinsic noise


Photograph of experiment electronics and sample chamber - attachments 3, 5-7
  7   Thu Feb 12 12:18:16 2026 CLWpaper
  6   Tue Feb 10 09:31:47 2026 Francisco Garci­a InfantesDetector Voltage vs Current

Analysis of how the current changes with increasing voltage for both detectors.

Detector 100 um.

Detector 100 µm
Voltage V Error Leakage current uA Error
10 0.1 0.02 0.01
20 0.1 0.03 0.01
30 0.1 0.05 0.01
40 0.1 0.08 0.01
50 0.1 0.1 0.01
60 0.1 0.11 0.01
70 0.1 0.12 0.01
80 0.1 0.14 0.01
90 0.1 0.15 0.01
100 0.1 0.15 0.01

Detector 150 um.

Detector 150 µm
Voltage V Error Leakage current uA Error
10 0.1 0.02 0.01
20 0.1 0.05 0.01
30 0.1 0.07 0.01
40 0.1 0.1 0.01
50 0.1 0.11 0.01
60 0.1 0.13 0.01
70 0.1 0.14 0.01
80 0.1 0.15 0.01
90 0.1 0.15 0.01
100 0.1 0.16 0.01

Attached is the plot showing the comparison between voltage and current.

  5   Tue Feb 10 09:03:26 2026 Francisco Garci­a InfantesContents of shipment boxes

BOX A

1) VME V340 crate, fan tray. Serial number 3797053, type UEL 6020.

2) VME V340 crate. Serial number 1996008, type UEV 6021.

3) VME power supply. Serial number 1896026, type UEP6021.

4) 1x CPU, MVME 2431. No serial number.

5) 1x Scaler, module V560M, serial number 310.

6) 1x ACQ control, for trigger, S1418. No serial number.

7) 3x Silena. 1) mod. 8418/6V. Serial number 108.

8) 2) Serial number 195.

9) 3) Serial number 192.

10) Flat cable to couple the threee SILENA modules with the cpu.

11) 3x Ethernet cable.

12) Power cable for VME.

13) Power cable for the VME.

BOX D

1) 10x RAL camplifier modules.

2) Standar fan tray, RS company. Serial number 46377.

3) 1x 9U KM-6 sub-rack (10x RAL109 amplifier modules). No serial number.

4) Junction box.

5) Power cable for the crate and for the fan tray.

BOX C

1) 1x CAMAC crate (2x 48-input OR), Le Croy, model 1434A. Serial number A38496.

2) 1x CAMAC crate power supply. Serial number A49732.

3) 2x 48-input OR. No serial number.

4) Power cable for the CAMAC crate.

5) Bipolar power supply +/- 15 V. No serial number.

6) Power cable for the Bipolar power supply.

7) Quad bias supply mod-7710 mat. 045 .

8) Pulser (Model PB-5). Serial number 33802.

9) Sum&Invert (Model 433A). model 433A ORTEC. Serial number 142.

BOX B

1) 1x Sun Ultra 45 workstation. Serial number 0743TFC0DF.

2) Mouse. Serial number 0581MCN-0714NC0175.

3) Keyboard. Serial number 0581MCN-0642NY5023.

4) Screen monitor.

5) 8x flat cables. From 9U KM-6 sub-rack to CAMAC crate and SILENA.

6) Ethernet switch. Serial number A03276G083700812 A.

7) 3x Power cable.

8) Logic Fan-in/Fan-out, Le Croy, model 429A, Serial Number B59330.

9) Extra A box.

10) New Jonction box.

Extra A

1) Connector for +- 15V & +- test.

2) 7x lemo cables.

3) 4x voltage cables.

4) Power cable for the fan of the preamp.

5) Extra cables for checking signals.

6) Flat cable with 8 channels.

7) Flat cable for voltage of the preamp.

8) Spare connection from preamp to feedthrough or detectors.

BOX E

1) Chamber and the sample/detector support.

2) 2x MSL type W1 preamplifier units. No Serial number.

3) Plate for the chamber.

4) Tripod for the chamber.

5) Manomiter for pressure reader.

6) Valves for vacuum.

7) Screws and cable connection from preamp to feedthroug and detectors.

8) Screws for detector and sample holder.

BOX F

1) 2x 150 um DSSSD detectors.

2) 1x 100 um DSSSD detector.

EXTRA BOX

1) Cable Extender.

  3   Fri Jan 30 15:45:48 2026 Francisco Garci­a InfantesDAQ and cables status

Concerning the electronic stuff. We will need:

  • 1x NIM bin.
    • Pulser (Model PB-5)
    • Sum&Invert (Model 433A)
    • Bias supply (Mod. 7710)
  • 2x MSL type W1 preamplifier units.
  • 4x flat cables.
  • Jonction Box.
  • 1x 9U KM-6 sub-rack (10x RAL109 amplifier modules)
  • 8x flat cables & 16x output in one side.
  • 1x CAMAC crate (2x 48-input OR)
  • x lemo cables
  • 1x VME V430 crate.
    • cpu.
    • scaler.
    • sac.
    • 3x Silena ADCs.
  • 1x Sun Ultra 45 workstation (flat panel, keyboard, mouse).
  2   Thu Jan 29 16:16:46 2026 Francisco García InfantesSetUp Status

Here is a brief status update on the chamber setup.

At the moment, we have all the main components required for the experiment related to the chamber:

  • Vacuum chamber

  • 2 × MSL type W DSSSDs

  • 2 × MSL type W1 preamplifier units

  • Sample support, feedthrough, and short cables

  • 4 fans for the preamplifiers

  • 2 cases for the preamplifiers

  • Samples: 2 NaCl, 1 Boron, 1 Lithium, 1 dummy, and 1 empty

  • Bias voltage cables for the preamplifiers

Please find attached some photos showing the current setup.

The only remaining item to be installed is the fans, which will be connected on Monday, February 2nd. We may also try installing the detectors soon; we have already tested the fit with a spare detector, and it fits well.

Additionally, the distance from the center still needs to be measured so that we can precisely determine the sample position from outside the chamber. We will need to add a reference mark for this.

Finally, if we decide to position the detectors further away from the beam, we will require longer bias voltage cables for the preamplifiers.

Please let me know if you need any further information.

 

  1   Mon Jan 26 11:29:14 2026 ClaudiaCount rate estimate and particle energies

Count rate estimate for all reaction measurements planned. 


Assumptions:

  • Neutron source 7Li(p,n); default setttings. 
  • Distance of sample to target: 30 cm
  • solid angle coverage: 0.4
  • areal density of samples very roughly estimated from alpha energy loss measurement from  Daresbury
  • includes calculation of expected particle energies at 0 and 180 degrees emission. 

Conclusions

  • All particles at all neutron energies should be stopped in 150 um detector. If one of them breaks, the 100 um detector should be installed at backward angles.
  • sufficient counting statistics for few hours running per target.
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