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Variables
d0_phi_analyzer_pixelLess_cff Namespace Reference

Variables

tuple d0_phi_analyzer_pixelless
 

Variable Documentation

tuple d0_phi_analyzer_pixelLess_cff.d0_phi_analyzer_pixelless
Initial value:
1 = cms.EDAnalyzer("BeamSpotAnalyzer",
2  BSAnalyzerParameters = cms.PSet(
3  RunAllFitters = cms.bool(False), ## False: run only default fitter
4  WriteToDB = cms.bool(False), ## do not write results to DB
5  ),
6  BeamFitter = cms.PSet(
7  Debug = cms.untracked.bool(False),
8  TrackCollection = cms.untracked.InputTag('ctfPixelLess'),
9  IsMuonCollection = cms.untracked.bool(False),
10  WriteAscii = cms.untracked.bool(True),
11  AsciiFileName = cms.untracked.string('BeamFit.txt'),
12  SaveNtuple = cms.untracked.bool(False),
13  SaveFitResults = cms.untracked.bool(False),
14  OutputFileName = cms.untracked.string('analyze_d0_phi.root'),
15  MinimumPt = cms.untracked.double(1.2),
16  MaximumEta = cms.untracked.double(2.4),
17  MaximumImpactParameter = cms.untracked.double(5),
18  MaximumZ = cms.untracked.double(150),
19  MinimumTotalLayers = cms.untracked.int32(8),
20  MinimumPixelLayers = cms.untracked.int32(0),
21  MaximumNormChi2 = cms.untracked.double(5.0),
22  TrackAlgorithm = cms.untracked.vstring(), ## ctf,rs,cosmics,initialStep,lowPtTripletStep...; for all algos, leave it blank
23  TrackQuality = cms.untracked.vstring(), ## loose, tight, highPurity...; for all qualities, leave it blank
24  InputBeamWidth = cms.untracked.double(-1.0), ## if -1 use the value calculated by the analyzer
25  FractionOfFittedTrks = cms.untracked.double(0.5),
26  MinimumInputTracks = cms.untracked.int32(100)
27  )
28 )

Definition at line 3 of file d0_phi_analyzer_pixelLess_cff.py.