Difference between revisions of "Real Gamma GDH Experiment (REGGE)"

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m (Minutes of meeting)
m (Misc. Tasks and questions)
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*MC simulation:
 
*MC simulation:
 
**Produce background and main event rates.
 
**Produce background and main event rates.
**What trigger(s) to use and what would be its efficiency?  
+
**<strike>What trigger(s) to use and what would be its efficiency? </strike>
**Should a beam hardener be used?  
+
**<strike>Should a beam hardener be used? </strike>
**Check rates quoted in the proposal (once we decide on beam hardener. Presently, the rates are estimated with a 1 MeV cutoff on the photon flux distribution.  
+
**<strike>Check rates quoted in the proposal (once we decide on beam hardener. Presently, the rates are estimated with a 1 MeV cutoff on the photon flux distribution. </strike>
**Determine detection efficiency vs photon energy.
+
**<strike>Determine detection efficiency vs photon energy.</strike>
 
**Optimize experimental setup
 
**Optimize experimental setup
 +
*Send decent version of the proposal to theorists (Simon, Alexandre).
 
*Update proposal with: (A. Deur)
 
*Update proposal with: (A. Deur)
 
**Add to the list of authors. For the non-GlueX collaborator, we have [http://www.gluex.org/GlueX/Bylaws.html by-law D.1] All proponents of such proposed experiments must be members of the GlueX Collaboration, or have a plan approved by the EG and CB for joining the Collaboration and participating in ongoing GlueX experiments.  
 
**Add to the list of authors. For the non-GlueX collaborator, we have [http://www.gluex.org/GlueX/Bylaws.html by-law D.1] All proponents of such proposed experiments must be members of the GlueX Collaboration, or have a plan approved by the EG and CB for joining the Collaboration and participating in ongoing GlueX experiments.  
**MC Simulation and set-up optimization
+
**<strike>MC Simulation and set-up optimization</strike>

Revision as of 16:47, 1 April 2020

GDH wiki page

To connect from the outside by phone please do the following

  1. To join via a Web Browser, go to the page [1] https://bluejeans.com/7572697526
  2. To join via Polycom room system go to the IP Address: 199.48.152.152 (bjn.vc) and enter the meeting ID: 7572697526
  3. To join via phone, use one of the following numbers and the Conference ID: 7572697526
  4. Moderator code:7377


Dial Either +1 408 740 7256 or +1 888 240 2560 for US or Canada

Minutes of meeting

09/17/2019

10/09/2019

10/23/2019

11/13/2019

11/27/2019

03/27/2020

03/31/2020

04/01/2020

Documents

Misc. Tasks and questions

  • Look into the figure of merit of the experiment in the low energy, where the photon beam polarization is low. (To see if constructing an additional tagger is justified). (A. Deur)
  • How well can we check beam charge asymmetry with BPMs?
  • Effect of a beam position-helicity correlation on the data. (M. Dalton)
  • MC simulation:
    • Produce background and main event rates.
    • What trigger(s) to use and what would be its efficiency?
    • Should a beam hardener be used?
    • Check rates quoted in the proposal (once we decide on beam hardener. Presently, the rates are estimated with a 1 MeV cutoff on the photon flux distribution.
    • Determine detection efficiency vs photon energy.
    • Optimize experimental setup
  • Send decent version of the proposal to theorists (Simon, Alexandre).
  • Update proposal with: (A. Deur)
    • Add to the list of authors. For the non-GlueX collaborator, we have by-law D.1 All proponents of such proposed experiments must be members of the GlueX Collaboration, or have a plan approved by the EG and CB for joining the Collaboration and participating in ongoing GlueX experiments.
    • MC Simulation and set-up optimization