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cscRecHitD_cff.py
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1 import FWCore.ParameterSet.Config as cms
2 
3 #
4 # Parameters for coordinate and uncertainty calculations
5 # Do not change them freely...
6 #
7 # These are empirical values.
8 # To be extracted from measurements (DB)
9 # The values bellow were tuned on MC (though there were MTCC ones too)
10 #
11 cscRecHitDParameters = cms.PSet(
12  #
13  # a XT asymmetry model parameter
14  XTasymmetry_ME1a = cms.double(0.023),
15  XTasymmetry_ME1b = cms.double(0.01),
16  XTasymmetry_ME12 = cms.double(0.015),
17  XTasymmetry_ME13 = cms.double(0.02),
18  XTasymmetry_ME21 = cms.double(0.023),
19  XTasymmetry_ME22 = cms.double(0.023),
20  XTasymmetry_ME31 = cms.double(0.023),
21  XTasymmetry_ME32 = cms.double(0.023),
22  XTasymmetry_ME41 = cms.double(0.023),
23  #
24  # constant systematics (in cm)
25  ConstSyst_ME1a = cms.double(0.01),
26  ConstSyst_ME1b = cms.double(0.02),
27  ConstSyst_ME12 = cms.double(0.02),
28  ConstSyst_ME13 = cms.double(0.03),
29  ConstSyst_ME21 = cms.double(0.03),
30  ConstSyst_ME22 = cms.double(0.03),
31  ConstSyst_ME31 = cms.double(0.03),
32  ConstSyst_ME32 = cms.double(0.03),
33  ConstSyst_ME41 = cms.double(0.03),
34  #
35  # 3 time bins noise (in ADC counts)
36  NoiseLevel_ME1a = cms.double(9.0),
37  NoiseLevel_ME1b = cms.double(6.0),
38  NoiseLevel_ME12 = cms.double(7.0),
39  NoiseLevel_ME13 = cms.double(4.0),
40  NoiseLevel_ME21 = cms.double(5.0),
41  NoiseLevel_ME22 = cms.double(7.0),
42  NoiseLevel_ME31 = cms.double(5.0),
43  NoiseLevel_ME32 = cms.double(7.0),
44  NoiseLevel_ME41 = cms.double(5.0)
45 )
46