Difference between revisions of "Electron Analysis"

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(New page: Preliminary list of analysis tasks ---------------------------------- 1. Singles data: a) examine normalized rate vs runlet for stability (strip by strip) b) verify consistency between ...)
 
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1. Singles data:
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* 1. Singles data
a) examine normalized rate vs runlet for stability (strip by strip)
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** [[a) examine normalized rate vs runlet for stability (strip by strip)]]
b) verify consistency between 1/3, 2/3 and 3/3 trigger (first for beam OFF runs)
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** [[b) verify consistency between 1/3, 2/3 and 3/3 trigger (first for beam OFF runs) ]]
c) repeat for production runs
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** [[c) repeat for production runs]]
  
  
2. Event mode data:
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* 2. Event mode data
a) stability of normalized rates vs runlet (strip by strips)
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** [[a) stability of normalized rates vs runlet (strip by strips)]]
b) normalized tracking rates and multiplicity vs runlets
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** [[b) normalized tracking rates and multiplicity vs runlets]]
c) use 2/3 and 3/3 to examine strip efficiency
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** [[c) use 2/3 and 3/3 to examine strip efficiency]]
d) use strip efficiency to verify consistency between 1/3, 2/3 and 3/3 triggers
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** [[d) use strip efficiency to verify consistency between 1/3, 2/3 and 3/3 triggers]]
e) efficiency weighted rates  
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** [[e) efficiency weighted rates]]
f) efficiency weighted rates vs Compton cross-section
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** [[f) efficiency weighted rates vs Compton cross-section]]
g) automated Compton edge finder
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** [[g) automated Compton edge finder]]
h) use tracking to confirm offsets between planes
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** [[h) use tracking to confirm offsets between planes]]
i) Check stability of offsets
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** [[i) Check stability of offsets]]
  
3. Accum mode data:
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* 3. Accum mode data
a) stability of normalized rates vs runlet (strip by strip)
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** [[a) stability of normalized rates vs runlet (strip by strip)]]
b) efficiency weighted rates, compared to Compton cross section
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** [[b) efficiency weighted rates, compared to Compton cross section ]]
c) asymmetry vs runlet (strip by strip)
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** [[c) asymmetry vs runlet (strip by strip)]]
d) asymmetry vs actual displacement of the electron (Compton edge position)
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** [[d) asymmetry vs actual displacement of the electron (Compton edge position)]]
e) consistency between 1/3, 2/3 and 3/3 trigger types
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** [[e) consistency between 1/3, 2/3 and 3/3 trigger types]]
f) polarization vs runlet  
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** [[f) polarization vs runlet]]
g) consistency between different methods of extacting polarization  
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** [[g) consistency between different methods of extracting polarization]]
i) Compton edge by eye, pol as the single parameter
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*** [[i) Compton edge by eye, pol as the single parameter]]
ii) Automated Compton edge and pol as single parameter
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*** [[ii) Automated Compton edge and pol as single parameter]]
iii) use both edge and zero crossing to determine polarization
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*** [[iii) use both edge and zero crossing to determine polarization]]
iv) compare differential method with the integral method
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*** [[iv) compare differential method with the integral method]]
  
  
4. Verify consistency between Fortran and C++ analyzers for most of these items.
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* 4. Verify consistency between Fortran and C++ analyzers for most of these items.

Revision as of 17:09, 25 May 2011