Difference between revisions of "Run Group A"
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** Request for 2 nA beam | ** Request for 2 nA beam | ||
** Look carefully int Halo counters, all halo counters upstream of the target are counting less than 10 Hz | ** Look carefully int Halo counters, all halo counters upstream of the target are counting less than 10 Hz | ||
− | ** Look into FT Calo scaler screen, which is the main measure how the beam is centered, for reference look https://logbooks.jlab.org/entry/3535015 this, | + | ** Look into FT Calo scaler screen, which is the main measure how the beam is centered, for reference look https://logbooks.jlab.org/entry/3535015 this, and make sure X and Y asymmetry is close to 0 (less than +/-6% with 2 nA beam, and less than 3% when you go to production current). |
− | and make sure X and Y asymmetry is close to 0 (less than +/-6% with 2 nA beam, and less than 3% when you go to production current). | + | ** If the beam is centered enough and halo rates on midstream and upstream halo counters don't exceed few Hz, request for 20 nA beam, |
+ | and check again beam is centered, and halo counters still coun order of few Hz. | ||
+ | |||
+ | * Next step is to do harp scans with all three harps, 2c21 harp, tagger harp and 2H01 harp | ||
+ | ** Before 2C21 and tagger harps scans put Upstream and midstream FSD thresholds to 100000, and the integration time 50ms. | ||
+ | ** As soon you are done with 2c21 and tagger harp scans, put back FSD hresholds for upstream and midstream counters to 1000, and integration time to 5 ms. | ||
* If the machine is down and it is back start with low current first (2nA and 5 nA) making sure that the beam is stable in current and position before moving to 30 nA | * If the machine is down and it is back start with low current first (2nA and 5 nA) making sure that the beam is stable in current and position before moving to 30 nA | ||
* In case of questions or uncertainties of what to do, please call the RC | * In case of questions or uncertainties of what to do, please call the RC | ||
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Revision as of 15:40, 21 February 2018
[edit]
Shift ScheduleShift ChecklistHot CheckoutBeam Time Accounting
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CLAS12 Run Group A, 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: Rafayel Paremuzyan
- (757) 575-7540
- 9 575 7540 from Counting Room
- rafopar@jlab.org
PDL: Eugene Pasyuk
- (757) 876-1789
- 9 876-1789 from Counting Room
- pasyuk@jlab.org
- Note 1: 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 2: At the end of each run, follow the DAQ restart sequence "end run", "abort", "reset", "download", "prestart", "go". 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 and issue a roc_reboot command and try again. Contact the DAQ expert if there are any questions.
- Note 3: Nominal beam positions: 2H01 (X=1.0 mm, Y=-1.5 mm)
- Note 4: With beam to the Faraday Cup, typical rates on all halo counters upstream from the target should be either 0 or of the order of few counts. Count rates in the range of tens or more may indicate bad beam tune or bleed-through from other Halls.
Run Plan:(last update 2/20 - 1:15 AM)
and check again beam is centered, and halo counters still coun order of few Hz.
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