Difference between revisions of "Engineering Run"
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* The accelerator will be down today to work on the 5th pass separator. Work to deliver beam simultaneously to Halls B and D will then commence. | * The accelerator will be down today to work on the 5th pass separator. Work to deliver beam simultaneously to Halls B and D will then commence. | ||
− | * When we are cleared by management, ramp the solenoid to 100% field and the torus to 85% field with reversed (negative) polarity. | + | * Ensure the tagger magnet is ramped to its nominal field. |
+ | * When we are cleared by management, ramp the solenoid to 100% field and the torus to 85% field with reversed (negative) polarity. If the forces are all acceptable, ramp the field to 100% and monitor the forces. If any are within 50 lbs of the trip setting, the field will have to be reduced. Record forces at each field in the logbook. | ||
* For the tuning phase during accelerator studies the beam should be tuned to the Hall B tagger dump yoke. Ensure that all CLAS12 detectors are turned off. | * For the tuning phase during accelerator studies the beam should be tuned to the Hall B tagger dump yoke. Ensure that all CLAS12 detectors are turned off. | ||
* Follow the standard procedures for tuning the beam in the upstream Hall B beamline. | * Follow the standard procedures for tuning the beam in the upstream Hall B beamline. | ||
* When acceptable beam is established, complete the test plan to commission the Moller polarimeter. | * When acceptable beam is established, complete the test plan to commission the Moller polarimeter. | ||
* Ask the accelerator to turn off the tagger magnet and follow the nominal degaussing procedure. | * Ask the accelerator to turn off the tagger magnet and follow the nominal degaussing procedure. | ||
− | * Tune the beam to the Faraday Cup following the standard procedures with a 1 nA beam. | + | * Tune the beam to the Faraday Cup following the standard procedures with a 1 nA beam. Ensure that the halo counter FSD thresholds are set to their nominal 1 nA values and the FSD system is unmasked for beam delivery. |
* When the beam tune is acceptable and stable, turn on ECAL and FTOF. If the rates are acceptable, turn on the remaining detectors. Record detector rates and DC currents in the logbook. | * When the beam tune is acceptable and stable, turn on ECAL and FTOF. If the rates are acceptable, turn on the remaining detectors. Record detector rates and DC currents in the logbook. | ||
− | * If rates and currents are acceptable, increase the beam current to 5 nA. Record detector rates and DC currents in the logbook. | + | * If rates and currents are acceptable, increase the beam current to 5 nA. Record detector rates and DC currents in the logbook. Ensure that the halo counter FSD threshold are set to their nominal 5 nA values. |
* Start the DAQ with the production electron trigger (trigger_electron.trg). Take data for 4 hours. | * Start the DAQ with the production electron trigger (trigger_electron.trg). Take data for 4 hours. | ||
* Continue work on trigger development/optimization. | * Continue work on trigger development/optimization. |
Revision as of 17:01, 18 December 2017
[edit]
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CLAS12 Engineering Run, Fall 2017
Beam energy 10.6 GeV (5 pass)
Torus : -3200 A (85% field), Solenoid: 2416 A (100% field), full target;
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
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 Shift:
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Every Run:
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