Difference between revisions of "Nuclear Target Test"
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* See guidance for BTA in '''[https://accwiki.acc.jlab.org/pub/SWDocs/BeamTimeAccounting/Machine_Time_Accounting_User_Guide.pdf Beam Time Accounting User Guide]'''. | * See guidance for BTA in '''[https://accwiki.acc.jlab.org/pub/SWDocs/BeamTimeAccounting/Machine_Time_Accounting_User_Guide.pdf Beam Time Accounting User Guide]'''. | ||
<!-- ===[https://clasweb.jlab.org/wiki/index.php/CLAS12_OPS_Doc#CLAS12_Operations_Documentation Operations Documentation]=== --> | <!-- ===[https://clasweb.jlab.org/wiki/index.php/CLAS12_OPS_Doc#CLAS12_Operations_Documentation Operations Documentation]=== --> | ||
+ | ===[https://www.jlab.org/Hall-B/run-web/nuclear_test/ESAD_HallB-CLAS12_rgB.pdf ESAD], [https://www.jlab.org/Hall-B/run-web/nuclear_test/COO_HallB-CLAS12_SVTtest.pdf COO], [https://www.jlab.org/Hall-B/run-web/nuclear_test/RSAD_HallB-CLAS12_nuclear_test.pdf RSAD], [https://www.jlab.org/div_dept/train/SAF111/Hall%20B%20worker%20Safety%20Training%20%28SAF111%29%20%2008%2001-12-1.pdf ERG] === | ||
+ | ===[https://www.jlab.org/Hall-B/run-web/nuclear_test/operational_safety_procedure_form_97278.pdf OSP for Insertion and Removal of Activation Foils]=== | ||
| valign=top | | | valign=top | | ||
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<br> | <br> | ||
+ | == <font color=blue>''' CLAS12 configuration '''</font>== | ||
+ | |||
+ | * Torus at full field, electrons inbending | ||
+ | * Solenoid at full field. | ||
+ | * BMT is removed | ||
+ | * FTT is OFF | ||
+ | * FTH OFF | ||
+ | * SVT is removed and replaced with two sensors | ||
+ | * BAND is removed | ||
+ | * FT is not in DAQ configuration. We will use scalers only | ||
+ | |||
+ | <br> | ||
{| {{TableStyle1}} | {| {{TableStyle1}} | ||
| valign=top width=50% | | | valign=top width=50% | | ||
− | == <font color=blue>''' Run Plan: | + | == <font color=blue>''' Run Plan: Feb 4-5, 2020 '''</font>== |
− | * Establish beam to the tagger | + | * target is 125um Pb |
− | * | + | * Establish beam to the tagger |
+ | * Establish beam to the Faraday cup | ||
* Turn all CLAS detectors ON | * Turn all CLAS detectors ON | ||
− | * Start luminosity scan from | + | * Check beam centerin on FTCAL scalers. Adjust if needed. |
− | * For each beam current make snapshots of: | + | * Start DAQ: PROD66_NUCL_TEST, trigger: rgf_inbending_v1_1.trg |
− | *# beam overview | + | * Start luminosity scan from 5 nA up to 100 nA with 5 nA steps keep DAQ running |
− | *# DAQ status | + | * For each beam current: |
− | *# FT scalers | + | ** reset monitoring histograms |
− | *# DC currents, | + | ** make snapshots of: |
+ | **# beam overview | ||
+ | **# beam strip charts | ||
+ | **# DAQ status | ||
+ | **# Run Control | ||
+ | **# trigger | ||
+ | **# HV overview | ||
+ | **# FT scalers | ||
+ | **# RICH scalers | ||
+ | **# SVT currents | ||
+ | **# DC currents | ||
+ | **# DC HV map | ||
+ | **# FTOF currents (FTOF Ammeter camera) | ||
+ | ** after 5 minutes of running at set current send monitoring histograms to the logbook | ||
+ | * some detectors may trip during luminosity scan. Make a note what tripped and at what current. Don't reset, keep going | ||
+ | * Once you get to 100 nA call RC for further guidance. | ||
+ | * At 6 am Bob will come to install dosimeters | ||
+ | * request escorted controlled access to install dosimeters and foils. | ||
+ | * DC HV OFF | ||
+ | * take beam until noon at TBD nA. Take snapshots of beam overview, beam strip charts, SVT currents strip chart every hour. | ||
+ | * Bob and RadCOn people are in the counting room request controlled access with RadCon to take dosimeters out of the hall and do activation counting | ||
+ | * ramp solenoid down and go to restricted access | ||
+ | |||
+ | -------------------- | ||
* Please note that we have added two items to the list of tasks for each run. | * Please note that we have added two items to the list of tasks for each run. | ||
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* At some later time we need to do an empty target run. Current will be 150 nA for 50M triggers which should take 2-3 hours. | * At some later time we need to do an empty target run. Current will be 150 nA for 50M triggers which should take 2-3 hours. | ||
------ | ------ | ||
− | '''DAQ config: <b> | + | '''DAQ config: <b>PROD66_NUCL_TEST</b> |
− | '''Trigger file : | + | '''Trigger file : rtrigger: rgf_inbending_v1_1.trg ''' |
− | <b> Compare the monitoring histograms </b> <!-- from [https://clas12mon.jlab.org/mon12/histograms/?reference=3748541 clas12mon] to the reference and troubleshoot as needed.--> | + | <!-- <b> Compare the monitoring histograms </b> <!-- from [https://clas12mon.jlab.org/mon12/histograms/?reference=3748541 clas12mon] to the reference and troubleshoot as needed.--> |
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== <font color=blue>''' References and Standards:'''</font>== | == <font color=blue>''' References and Standards:'''</font>== | ||
− | ''(last update 1/ | + | ''(last update 1/29/2020- 23:20)'' |
<b> Nominal Beam Positions </b> | <b> Nominal Beam Positions </b> | ||
− | *2H01, X: | + | *2H01, X: -1.0 mm, Y: +1.5 mm |
− | *2C21, X: 0.0 mm, Y: 0. | + | *2C21, X: 0.0 mm, Y: 0.1 mm |
− | *2C24, X: -0.3 mm, Y: | + | *2C24, X: -0.3 mm, Y: +0.2 mm |
<b> FSD Thresholds </b> | <b> FSD Thresholds </b> | ||
* Upstream: 2000 Hz | * Upstream: 2000 Hz | ||
* Midstream: 2000 Hz | * Midstream: 2000 Hz | ||
− | * Downstream: | + | * Downstream: 1500000 Hz |
− | * BOM: | + | * BOM: 500000 |
+ | * Integration time: 5ms | ||
<b> Reference Harp Scans for Beam on Faraday Cup: </b> 2C21 [https://logbooks.jlab.org/entry/3759969], 2C24 (tagger harp) [https://logbooks.jlab.org/entry/3759229], 2H01 [https://logbooks.jlab.org/entry/3759255] | <b> Reference Harp Scans for Beam on Faraday Cup: </b> 2C21 [https://logbooks.jlab.org/entry/3759969], 2C24 (tagger harp) [https://logbooks.jlab.org/entry/3759229], 2H01 [https://logbooks.jlab.org/entry/3759255] | ||
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* [http://hallbcam07.jlab.org/ Faraday Cup Beam Viewer] | * [http://hallbcam07.jlab.org/ Faraday Cup Beam Viewer] | ||
* [http://cctv1.jlab.org Tagger Beam Dump Viewer] | * [http://cctv1.jlab.org Tagger Beam Dump Viewer] | ||
− | * [http://cctv12.jlab.org | + | * [http://cctv12.jlab.org FTOF Ammeter] |
* [http://hallbcam02.jlab.org Hall Fisheye] | * [http://hallbcam02.jlab.org Hall Fisheye] | ||
* [http://cctv11.jlab.org Saclay Cryotarget] | * [http://cctv11.jlab.org Saclay Cryotarget] | ||
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= Useful Links = | = Useful Links = |
Latest revision as of 13:58, 25 July 2024
Shift ScheduleShift ChecklistHot CheckoutBeam Time Accounting
ESAD, COO, RSAD, ERGOSP for Insertion and Removal of Activation Foils |
Manuals |
Procedures |
JLab Logbooks
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- Note, all non-JLab numbers must be dialed with an area code. When calling from a counting-house landline, dial "9" first.
- To call JLab phones from outside the lab, all 4-digit numbers must be preceded by 757-269
- Click Here to edit Phone Numbers. Note, you then also have to edit the current page to force a refresh.
Click Here to edit Phone Numbers. Note, you then also have to edit this page to force a refresh.
CLAS12 Nuclear Target Test, January 31 - February 7, 2020
Beam energy ~10.4 GeV (5 pass)
Important: Document all your work in the logbook!
RC: Eugene Pasyuk
- (757) 575-7540
- 9 575 7540 from Counting Room
- pasyuk@jlab.org
PDL: Maurizio Ungaro
- (757) 876-1789
- 9 876-1789 from Counting Room
- ungaro@jlab.org
CLAS12 configuration
- Torus at full field, electrons inbending
- Solenoid at full field.
- BMT is removed
- FTT is OFF
- FTH OFF
- SVT is removed and replaced with two sensors
- BAND is removed
- FT is not in DAQ configuration. We will use scalers only
Run Plan: Feb 4-5, 2020
DAQ config: PROD66_NUCL_TEST Trigger file : rtrigger: rgf_inbending_v1_1.trg
Keep an eye on CND channel S14L1R -- it's a bit temperamental. If it trips, switch HV off and on again for it and make an entry in the log book. At the end of each run, follow the STANDARD DAQ RESTART SEQUENCE
References and Standards:(last update 1/29/2020- 23:20) Nominal Beam Positions
FSD Thresholds
Reference Harp Scans for Beam on Faraday Cup: 2C21 [2], 2C24 (tagger harp) [3], 2H01 [4] Reference Harp Scans for Beam on Tagger dump: 2C21 [5], 2C24 (tagger harp) [6] Reference Monitoring Histograms (40 nA, production trigger) [7] Counter rates
Beamline vacuum: should be not higher than 5e-5.
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General Instructions:
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Notes / Troubleshooting :
If crate ADCBAND was rebooted: Contact BAND expert and make a note in the HBBAND logbook and in HBLOG.
FTOF HVs: The goal is to minimize the number of power cycles of the dividers.
- OFF during: initial beam tuning to the Faraday Cup after CLAS12 has been off for a long shutdown, during a Moller run, harp scans, or if there is tuned/pulsed beam in the upstream beamline.
- ON after an initial beam tune has been established and if there are only minor steering adjustments and “tweaks” being made.
- If in doubt, call FTOF expert
FTT (mmft1) recovery:
- power cycle FTT LV (FT->FTT->turn LV OFF, turn LV ON)
- RunControl "reset"
- roc_reboot mmft1
Torus and/or Solenoid Fast Dump
- Notify MCC to request beam OFF and to drop Hall B status to Power Permit
- Call Engineering on-call
- Make separate log entry with copies to HBTORUS and HBSOLENOID logbooks. In the "Notify" field add Ruben Fair, Probir Goshal, Dave Kashy and esr-users@jlab.org
- Notify Run Coordinator
- Turn off all detectors
Beam to the Faraday Cup: Fast Shut Down elements
- Upstream, Midstream, Downstream, BOM, and Solenoid FSD elements should always be in the state UNMASKED
- No changes to the FSD threshold should be made without RC or beamline expert approval
Turning MVT off: do not press "All HV OFF". Instead go to 'Restore settings' from the MVT overview screen:
- SafeMode.snp for beam tuning and Moeller runs
- MV_HV_FullField.snp for full solenoid field
- MV_HV_MidField.snp wgeb solenoid < 4T
CND CAMAC crate switch on / reboot:
If CAMAC crate (camac1) holding CND CFD boards is switched off for any reason, always reset the associated CND CFD thresholds by typing, ssh into clondaq3 and type:
$CODA/src/rol/Linux_x86_64/bin/cnd-cfd-thresh -w 0
If this command is failing and the crate is not responding, first reboot it as follows: roc_reboot camac1
and then repeat the threshold reset command above.
Solutions for common SVT issues: see [9]
RICH recovery procedures: [10]
To be followed in case of:
- DAQ crash: rich4 is not responding or
- RICH alarms (LV,missing tile, temperature, etc).
If it does not work or you are uncertain about what to do, contact the RICH expert on call. Please note that missing tiles typically occur due to lost communication. Keep in mind that the recovery procedure will kill DAQ. If DAQ is running for purpose other than data taking (for which the RICH acceptance is important) do not initiate the recovery procedure. The most critical parameter for the RICH is the temperature of the photosensors. If the temperature rises above limits, an interlock will automatically turn the RICH HV and LV off. If this happens, notify the expert on call and keep taking data without RICH.
Observed asymmetry in FTCal ADC Scalers
When running at low current (<10 nA), FTC asymmetries can be affected by hot channels. If large asymmetries are detected in those conditions, cross check with other detectors (BOM rates, DC occupancies) before taking further action.
CED display not showing events
Sometimes, CED screens are up but not active (events not showing at all). To solve this:
- Close the CED sceen
- ssh to clondaq4
- Once in the right machine, type ced, and wait for the windows to appear.
- Go to "File" -> "Connect to ET ring". Make sure to select clondaq6, as the online data is being streamed.
- Go to "Events" (same level as "File") and check "Auto Next-Event Every 2.0 sec" (if it is not selected).
You should see the events now, if all is working well.
Hall-B
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