Difference between revisions of "Engineering Run"
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* Following beam tuning to the tagger magnet yoke, complete a Moller polarimeter run. The beamline expert should be present for this portion of the run plan. | * Following beam tuning to the tagger magnet yoke, complete a Moller polarimeter run. The beamline expert should be present for this portion of the run plan. | ||
* When the beam tune in the upstream beamline is acceptable, ask MCC to turn off and then degauss the tagger magnet. Begin beam tuning to the Faraday Cup with 5 nA of beam. This work will include harp scans and target scans to find the nominal beam position. The beamline expert should be present for this portion of the run. Make sure to put screen captures of the main scaler GUI in the logbook. | * When the beam tune in the upstream beamline is acceptable, ask MCC to turn off and then degauss the tagger magnet. Begin beam tuning to the Faraday Cup with 5 nA of beam. This work will include harp scans and target scans to find the nominal beam position. The beamline expert should be present for this portion of the run. Make sure to put screen captures of the main scaler GUI in the logbook. | ||
− | * When the beam tuning is completed, begin detector turn on with 10 nA of beam on the empty target cell. Turn on the Forward Carriage detectors first (ECAL, FTOF, LTCC, HTCC, RICH) - contacting the subsystem teams to perform this work. Record rates and current for all detectors in the logbook. This work is as specified in the Commissioning Run Plan [https://www.jlab.org/Hall-B/calcom/cwb-erun.pdf Step #4]. | + | * When the beam tuning is completed, begin detector turn on with 10 nA of beam on the empty target cell. Turn on the Forward Carriage detectors first (ECAL, FTOF, LTCC, HTCC, RICH) - contacting the subsystem teams to perform this work. Record rates and current for all detectors in the logbook. This work is as specified in the Commissioning Run Plan [https://www.jlab.org/Hall-B/calcom/cwb-erun.pdf Phase 1 Step #4]. |
− | * Fill the cryotarget following the instructions next to the target computer. Contact Hall B Engineering for any questions. This work is as specified in the Commissioning Run Plan [https://www.jlab.org/Hall-B/calcom/cwb-erun.pdf Step #5]. | + | * Fill the cryotarget following the instructions next to the target computer. Contact Hall B Engineering for any questions. This work is as specified in the Commissioning Run Plan [https://www.jlab.org/Hall-B/calcom/cwb-erun.pdf Phase 1 Step #5]. |
− | * Continue detector turn on now for the DC, CTOF, CND, and SVT - contacting the subsystem teams to perform this work. Record rates and current for all detectors in the logbook. This work is as specified in the Commissioning Run Plan [https://www.jlab.org/Hall-B/calcom/cwb-erun.pdf Step #6]. | + | * Continue detector turn on now for the DC, CTOF, CND, and SVT - contacting the subsystem teams to perform this work. Record rates and current for all detectors in the logbook. This work is as specified in the Commissioning Run Plan [https://www.jlab.org/Hall-B/calcom/cwb-erun.pdf Phase 1 Step #6]. |
− | * Begin initial DAQ and trigger checkout to re-establish the DAQ and basic electron trigger from the Dec. 2017 run. This work will be led by the DAQ and trigger experts. This work is as specified in the Commissioning Run Plan [https://www.jlab.org/Hall-B/calcom/cwb-erun.pdf Step #7]. | + | * Begin initial DAQ and trigger checkout to re-establish the DAQ and basic electron trigger from the Dec. 2017 run. This work will be led by the DAQ and trigger experts. This work is as specified in the Commissioning Run Plan [https://www.jlab.org/Hall-B/calcom/cwb-erun.pdf Phase 1 Step #7]. |
− | * Work on detector setup optimization steps to set DC readout windows for R1, R2, and R3, and the PMT-based detector TDC readout windows to match the FADC windows. This work will be led by the DAQ expert in conjunction with the subsystem experts. This work is as specified in the Commissioning Run Plan [https://www.jlab.org/Hall-B/calcom/cwb-erun.pdf Step #8]. | + | * Work on detector setup optimization steps to set DC readout windows for R1, R2, and R3, and the PMT-based detector TDC readout windows to match the FADC windows. This work will be led by the DAQ expert in conjunction with the subsystem experts. This work is as specified in the Commissioning Run Plan [https://www.jlab.org/Hall-B/calcom/cwb-erun.pdf Phase 1 Step #8]. |
− | * If necessary complete studies of the DC HV settings and DCRB thresholds. This work will be led by the DC expert. This work is as specified in the Commissioning Run Plan [https://www.jlab.org/Hall-B/calcom/cwb-erun.pdf Step #9]. | + | * If necessary complete studies of the DC HV settings and DCRB thresholds. This work will be led by the DC expert. This work is as specified in the Commissioning Run Plan [https://www.jlab.org/Hall-B/calcom/cwb-erun.pdf Phase 1 Step #9]. |
− | * Work on optimizing the electron trigger. This work will be led by the trigger team. This work is as specified in the Commissioning Run Plan [https://www.jlab.org/Hall-B/calcom/cwb-erun.pdf Step #10]. | + | * Work on optimizing the electron trigger. This work will be led by the trigger team. This work is as specified in the Commissioning Run Plan [https://www.jlab.org/Hall-B/calcom/cwb-erun.pdf Phase 1 Step #10]. |
* Begin solenoid rate studies and luminosity scans with both torus polarities at full torus field. | * Begin solenoid rate studies and luminosity scans with both torus polarities at full torus field. | ||
Revision as of 09:37, 11 January 2018
[edit]
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CLAS12 Engineering Run, Winter 2018
Beam energy 10.6 GeV (5 pass)
Important: Document all your work in the logbook!
Remember to fill in the run list at the beginning and end of each run (clas12run@gmail.com can fill the run list)
RC: Daniel S. Carman
- (757) 575-7540
- 9 575 7540 from Counting Room
- carman@jlab.org
PDL: Eugene Pasyuk
- (757) 876-1789
- 9 876-1789 from Counting Room
- pasyuk@jlab.org
- Note 1: The FT-Off configuration is presently set up - the FT components should be left off.
- Note 2: Due to issues with the gas handling system with the MM trackers (BMT and FMT), these components should be left off.
- Note 3: Be very mindful of the background rates in the halo counters, rates in the detectors, and currents in the SVT for all settings to ensure that they are at safe levels.
- Note 4: At the end of each run, follow the DAQ restart sequence "end run", "abort", "reset", "download", "prestart", "go". The DAQ rate should be 2 -3 kHz (this includes a 1 kHz pulser). After DAQ prestart is complete reboot the scaler IOCs with the command: iocjscalerRestartAll.sh. Note: After each step, make sure it is complete in the Run Control message window. If a roc has crashed, find which one it is an issue a roc_reboot command and try again. Contact the DAQ expert if there are any questions.
Run Plan:
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General Instructions:
Beam Tuning:
When ready to get beam, Turn all beamline devices ON, turn all CLAS12 detectors OFF (including SVT)
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Every Run:
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