Difference between revisions of "Solid Background"

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(result of PVDIS for BaBar configuration)
(result of SIDIS for BaBar configuration)
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** the cut (E>0.9GeV for forward angle EC, E>3.5GeV for large angle EC) is to match SIDIS physics and trigger condition, refer to SIDIS rate estimation at page 48 of [http://hallaweb.jlab.org/collab/PAC/PAC35/PR-10-006-SoLID-Transversity.pdf].  
 
** the cut (E>0.9GeV for forward angle EC, E>3.5GeV for large angle EC) is to match SIDIS physics and trigger condition, refer to SIDIS rate estimation at page 48 of [http://hallaweb.jlab.org/collab/PAC/PAC35/PR-10-006-SoLID-Transversity.pdf].  
 
** When use the result with the cut to compare to SIDIS rate table in proposal, please note SIDIS has a correction factor 2 based on data comparison, refer to page 66 of [http://hallaweb.jlab.org/collab/PAC/PAC35/PR-10-006-SoLID-Transversity.pdf]. So assume the correction is good for all pion calculated from Wiser, all numbers for pions in the table should divided by 2
 
** When use the result with the cut to compare to SIDIS rate table in proposal, please note SIDIS has a correction factor 2 based on data comparison, refer to page 66 of [http://hallaweb.jlab.org/collab/PAC/PAC35/PR-10-006-SoLID-Transversity.pdf]. So assume the correction is good for all pion calculated from Wiser, all numbers for pions in the table should divided by 2
** both rate and Energy Flux show the total value integrated over full azimuthal angle.
 
  
 
=== result of PVDIS for BaBar configuration===
 
=== result of PVDIS for BaBar configuration===

Revision as of 01:39, 1 February 2012

Single particle inclusive production

Single particle inclusive production can be signal or background depends on what the studied physics is. But it always add into radiation dose taken by detectors.

How it has been done in the proposals

current study

approach

result of SIDIS for BaBar configuration

eDIS Cut eDIS NoCut pi- Cut pi- NoCut pi+ Cut pi+ NoCut
rate at forward angle EC (Hz) 63k 63k 4.9M 11M 5.7M 13M
rate at large angle EC (Hz) 3.3k 19k 9.6k 20M 9.1k 24M
Energy Flux at forward angle EC (GeV/10cm2/s) 3.3k 19k 9.6k 20M 9.1k 24M
Energy Flux at large angle EC (GeV/10cm2/s) 3.3k 19k 9.6k 20M 9.1k 24M
  • note
    • eDIS means DIS electron which require W>2GeV and Q2>1(GeV)^2
    • the cut (E>0.9GeV for forward angle EC, E>3.5GeV for large angle EC) is to match SIDIS physics and trigger condition, refer to SIDIS rate estimation at page 48 of [1].
    • When use the result with the cut to compare to SIDIS rate table in proposal, please note SIDIS has a correction factor 2 based on data comparison, refer to page 66 of [2]. So assume the correction is good for all pion calculated from Wiser, all numbers for pions in the table should divided by 2

result of PVDIS for BaBar configuration

eDIS (Open) pi- (Open) pi+ (Open) eDIS (baffled) pi- (baffled) pi+ (baffled)
rate at forward angle EC (Hz) 3M 5775M 11697M 350k 64M 110M
Energy Flux at forward angle EC (GeV/10cm2/s) (total,peak) 573, 25 4e5,1e4 7.6e5,2e4 120,6 6700,300 1663,100
  • note
    • eDIS means DIS electron which require W>2GeV and Q2>1(GeV)^2
    • comparing to PVDIS rate table in proposal at page 40 of [3]
    • Energy Flux drops quickly with R, the peak value at lowest R

EM energy flux on EC (outdated)

  • geant3 has EM process total energy cut at 1MeV
  • Both SIDIS and PVDIS have confirmed energy flux on EC by the genat3 simulation in the proposals.
  • geant4 geometry and materiel checked, no simple mistake found.
  • with energy cut on 1MeV, SIDIS geant4 result is close SIDIS geant3, but PVDIS geant4 is still one order larger than PVDIS geant3.
  • More careful study like particle type, hit processing under way.
solid_BaBar_SIDIS_background_vertex of hits on forward EC (top:electron, middle:photon,bottom:others)
solid_BaBar_PVDIS_nobaffle_background_vertex of hits on forward EC(top:electron, middle:photon,bottom:others)



rate on GEM

  • rate on GEM need more study, particular from photon-induced rate, SBS has more mature simulation tested with data, their photon-induced rate is about twice of electron rate, need to learn from them.