Difference between revisions of "GlueX/JEF 2025-01 data set"

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(Periods)
(Periods)
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# period 11: commissioning, change beam current from 250nA to 300nA, 131184->
 
# period 11: commissioning, change beam current from 250nA to 300nA, 131184->
 
# period 12: commissioning, ECAL HV changes, 131196->
 
# period 12: commissioning, ECAL HV changes, 131196->
 +
# period 13: commissioning, ECAL+FCAL+BCAL trigger implemented, 131207->
  
 
{| class="wikitable"
 
{| class="wikitable"
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|-
 
|-
 
| 131196
 
| 131196
| 131???
+
| 131206
 
| 12
 
| 12
 
| [https://halldweb.jlab.org/primexd/ecal-cal/2025-01/12 ecal] [https://halldweb.jlab.org/primexd/fcal-cal/2025-01/12 fcal]
 
| [https://halldweb.jlab.org/primexd/ecal-cal/2025-01/12 ecal] [https://halldweb.jlab.org/primexd/fcal-cal/2025-01/12 fcal]
 +
|-
 +
| 131207
 +
| 131???
 +
| 13
 +
| [https://halldweb.jlab.org/primexd/ecal-cal/2025-01/13 ecal] [https://halldweb.jlab.org/primexd/fcal-cal/2025-01/13 fcal]
 
|}
 
|}
  

Revision as of 20:54, 25 April 2025


List of changes

These lists are giving the run ranges where the ECAL/FCAL hardware was not changed.

Monitoring results

What is currently in the default variation

The default variation contains the latest and most up-to-date tables.

Periods

  1. period 0: commissioning
  2. period 1: commissioning, 1st ECAL HV changes, 130993->
  3. period 2: commissioning, 1st FCAL HV changes, 131016->
  4. period 3: commissioning, 2nd ECAL HV changes, 131032->
  5. period 4: commissioning, FCAL included in the trigger, 131057->
  6. period 5: commissioning, ECAL HV turn off for the first 3 layers, 131071->
  7. period 6: commissioning, ECAL HV turn on for all layers, 131074->
  8. period 7: commissioning, ECAL trigger turn off, thus FCAL/BCAL trigger, 131082->
  9. period 8: commissioning, FCAL HV changes, 131133->
  10. period 9: commissioning, ECAL HV changes, 131050->
  11. period 10: commissioning, ECAL/FCAL HV changes, 131179->
  12. period 11: commissioning, change beam current from 250nA to 300nA, 131184->
  13. period 12: commissioning, ECAL HV changes, 131196->
  14. period 13: commissioning, ECAL+FCAL+BCAL trigger implemented, 131207->
Min Run Max Run Batch # Gains/Timing Offsets
130862 130992 0 ecal fcal
130993 131015 1 ecal fcal
131016 131031 2 ecal fcal
131032 131056 3 ecal fcal
131057 131069 4 ecal fcal
131071 131072 5 ecal fcal
131074 131077 6 ecal fcal
131082 131132 7 ecal fcal
131133 131049 8 ecal fcal
131050 131160 9 ecal fcal
131179 131183 10 ecal fcal
131184 131195 11 ecal fcal
131196 131206 12 ecal fcal
131207 131??? 13 ecal fcal

Timing

Done for each batches above.

Pedestals

The pedestal calibration is performed for each block & run. When there is no response to LED lights, the block is marked as a potential bad block and is set arbitrarily to a pedestal value corresponding to the average pedestal value for the runs in which this block sees the LED lights.

Gain matching calibration plots

The gain matching is using the ECAL/FCAL rawdata/pi0-skim.

Checking the ECAL/FCAL gains

Look at the reports and individual diphoton invariant mass.

Energy dependence correction monitoring plots

Bad block map

This map is done for each run number by combining the info collected by analyzing the LED and pi0 skims. This map has to be compared with the block efficiency map. During the simulation smearing, it is either the bad block map or the block efficiency map that has to be used. The bad block map excludes all blocks marked as the central block of a cluster. The block efficiency assigned an efficiency number to this block.

Block efficiency map