Difference between revisions of "Thursday, February 18, 2016 4PM ET"

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Shielding: Shielding beam intercepting collimator to minimize the radiation dose, especially neutron radiation.
 
Shielding: Shielding beam intercepting collimator to minimize the radiation dose, especially neutron radiation.
 
  
  
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Study the pion rate as well as maintain/develop a reliable pion generator.
 
Study the pion rate as well as maintain/develop a reliable pion generator.
 
  
  
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backgrounds, maybe
 
backgrounds, maybe
 
the systematic error can be better than 1.5m design.
 
the systematic error can be better than 1.5m design.
 
  
  
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different light guide design, 2) real quartz simulation with different
 
different light guide design, 2) real quartz simulation with different
 
light guide design and different "cut" on quartz
 
light guide design and different "cut" on quartz
 
  
  
 
5. Detector prototype (Yuxiang)
 
5. Detector prototype (Yuxiang)
 
  
  
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Play with the quartz segmentation to study the correlations between
 
Play with the quartz segmentation to study the correlations between
 
different backgrounds.
 
different backgrounds.
 
  
 
==Agenda==
 
==Agenda==
* MOLLER Shielding and Detector Background Update by Rakitha [https://userweb.jlab.org/~rakithab/talks/MOLLER_12GeV/moller_shielding_beampipe_update_2.pdf slides]
+
* put your slides here
  
 
<br><br> Return to [[Teleconferences]]
 
<br><br> Return to [[Teleconferences]]
 
<br> Return to [[MOLLER at 11 GeV E09-005]]
 
<br> Return to [[MOLLER at 11 GeV E09-005]]

Revision as of 14:41, 17 February 2016

Previous meeting: Thursday, February 4, 2016 4PM ET

Task list:

1. Collimator design and shielding (Rakitha)

Collimator Designing: Designing the beam intercepting collimator (Primary collimator) collaborating with engineering

Shielding: Shielding beam intercepting collimator to minimize the radiation dose, especially neutron radiation.


2. Pion rate (Rakitha, Ciprian, Scott Mundy(W&M))

Study the pion rate as well as maintain/develop a reliable pion generator.


3. Target length optimization (???)

Play with target length (try 1.25m) to check the correlations of backgrounds, maybe the systematic error can be better than 1.5m design.


4. optical simulation (Yuxiang, anybody else?)

Can be separated in to two parts, 1)Gas scintillation simulation with different light guide design, 2) real quartz simulation with different light guide design and different "cut" on quartz


5. Detector prototype (Yuxiang)


6. Background study and systematic error study (Yuxiang)

Maintain the analysis framework of systematic error estimation. Play with the quartz segmentation to study the correlations between different backgrounds.

Agenda

  • put your slides here



Return to Teleconferences
Return to MOLLER at 11 GeV E09-005