18 #include "TGraphAsymmErrors.h"
46 AliInfo(Form(
" Settings for run year 20%2d",
fRunNumber));
53 if (
fCollisionType==0) { AliInfo(
" Settings for p-p collisions"); }
54 else if(
fCollisionType==1) { AliInfo(
" Settings for Pb-Pb collisions"); }
55 else if(
fCollisionType==2) { AliInfo(
" Settings for p-Pb collisions"); }
66 AliInfo(
" Settings for the low energy run");
70 AliInfo(
"Settings for the low pt analysis");
74 AliInfo(
"Settings for the pass4 analysis");
78 AliInfo(
"Settings for the Lc BDT analysis");
84 AliInfo(
" Settings for the PbPb 2010 energy scan");
90 AliInfo(Form(
" Settings for rapidity interval %s",
fRapidityRange.Data()));
94 AliInfo(
"Settings for the pPb vs y measurement");
void InitDstartoD0pi2010PbPb2040CentScan()
void InitDstartoD0pi2011PbPb2030CentScan()
void InitDplustoKpipi2011PbPb3040CentScan()
void SetIsLowEnergy(Bool_t flag)
void InitDstartoD0pi2013pPb2040ZNA()
void InitD0toKpi2010PbPb6080CentScan()
void InitDplustoKpipi2010ppLowEn()
void InitDplustoKpipi2013pPb020ZNA()
void InitD0toKpi2013pPb0100()
void InitD0toKpi2013pPb60100CL1()
void InitDplustoKpipi2013pPb60100CL1()
void InitDstartoD0pi2013pPb2040V0A()
Bool_t fIsBDTAnalysis
flag for the pass4 analysis
TString fRapidityRange
MB:0100, 0-10:010, 0-20:020 ...40-80:4080...
void InitDstartoD0pi2010PbPb6080CentScan()
void InitDstartoD0pi2013pPb0100RapScan0104()
void InitDplustoKpipi2011PbPb3050()
void InitDplustoKpipi2013pPb0100RapScan0408()
void InitD0toKpi2013pPb2040CL1()
void InitD0toKpi2013pPb4060CL1()
TH1F * fPIDEff
cuts efficiency
void InitDplustoKpipi2011PbPb010()
void InitDstartoD0pi2013pPb60100CL1()
void InitDplustoKpipi2011PbPb010CentScan()
void InitD0toKpi2011PbPb1020CentScan()
Bool_t fIsLowEnergy
Rapidity range fot y measurements.
void InitDplustoKpipi2013pPb0100RapScan0401()
void InitDstartoD0pi2011PbPb3040CentScan()
void SetCentrality(TString centrality)
void InitD0toKpi2013pPb0100RapScan0408()
TH1F * fBR
tracking efficiency
void InitD0toKpi2010PbPb020()
void InitDstartoD0pi2013pPb0100()
void InitDstartoD0pi2012pp()
TH1F * fMCPtShape
PID efficiency.
void InitDplustoKpipi2013pPb4060V0A()
void InitLctopK0S2010pp()
void InitDstartoD0pi2010PbPb2040()
void InitDstartoD0pi2010PbPb4060CentScan()
void SetIsPbPb2010EnergyScan(Bool_t flag)
void InitDplustoKpipi2010PbPb1020CentScan()
void InitDstoKKpi2011PbPb2050()
Double_t GetCutsEffErr(Double_t pt) const
void InitDstartoD0pi2011PbPb010()
void InitDstartoD0pi2010PbPb020()
Double_t GetNormErr() const
void InitDstartoD0pi2013pPb60100ZNA()
void InitDplustoKpipi2013pPb0100RapScan0101()
void InitDplustoKpipi2010PbPb020()
void InitDstartoD0pi2013pPb0100RapScan0408()
TH1F * ReflectHisto(TH1F *hin) const
void InitD0toKpi2011PbPb010CentScan()
Int_t GetRunNumber() const
void InitDplustoKpipi2013pPb60100ZNA()
void SetIsBDTAnalysis(Bool_t flag)
void InitDplustoKpipi2013pPb0100RapScan0804()
void InitD0toKpi2011PbPb3050()
Double_t GetBRErr() const
void InitDstartoD0pi2011PbPb1020CentScan()
Double_t GetPartAntipartErr(Double_t pt) const
void InitDstartoD0pi2011PbPb4050CentScan()
void InitDplustoKpipi2010PbPb4060CentScan()
void InitD0toKpi2013pPb2040V0A()
void InitDplustoKpipi2010PbPb4080()
void InitD0toKpi2013pPb4060ZNA()
void InitD0toKpi2010PbPb2040CentScan()
Double_t GetSeleEffErr(Double_t pt) const
void InitD0toKpi2013pPb0100RapScan0401()
void InitD0toKpi2013pPb020V0A()
void InitD0toKpi2010PbPb010CentScan()
void InitD0toKpi2013pPb0100RapScan0804()
void InitD0toKpi2013pPb2040ZNA()
void InitLctopKpi2013pPbBDT()
void InitDstartoD0pi2010ppLowEn()
void InitLctopKpi2010pp()
void InitLctopKpi2010ppBDT()
void InitDstartoD0pi2013pPb020V0A()
void InitLctopK0S2013pPb()
void InitD0toKpi2010PbPb5080CentScan()
void InitD0toKpi2013pPb0100RapScan0104()
void InitDstartoD0pi2010PbPb1020CentScan()
void InitD0toKpi2013pPb020CL1()
AliHFSystErr & operator=(const AliHFSystErr &source)
void InitDstartoD0pi2010PbPb010CentScan()
Double_t GetTrackingEffErr(Double_t pt) const
void InitD0toKpi2013pPb60100V0A()
void InitDstartoD0pi2011PbPb07half()
void InitD0toKpi2011PbPb07half()
void InitDstartoD0pi2013pPb4060ZNA()
void InitDstartoD0pi2013pPb0100RapScan0401()
TH1F * fRawYield
normalization
void InitDstartoD0pi2010PbPb5080CentScan()
void InitDplustoKpipi2013pPb2040CL1()
void InitDstartoD0pi2010PbPb4080()
void InitDplustoKpipi2013pPb020V0A()
void InitDstartoD0pi2013pPb4060V0A()
AliHFSystErr(const Char_t *name="HFSystErr", const Char_t *title="")
void InitDstartoD0pi2013pPb0100RapScan0101()
void InitDplustoKpipi2010PbPb6080CentScan()
TH1F * fPartAntipart
MC dNdpt.
void SetIsPass4Analysis(Bool_t flag)
void InitDstartoD0pi2013pPb020ZNA()
Bool_t fIsRapidityScan
flag fot the PbPb centrality scan
void InitD0toKpi2013pPb4060V0A()
void InitDstoKKpi2013pPb0100()
void InitDplustoKpipi2013pPb4060ZNA()
TH1F * fTrackingEff
raw yield
void InitDplustoKpipi2013pPb0100()
TString fCentralityClass
Collision type: pp=0, PbPb=1.
void InitDplustoKpipi2010pp()
Double_t GetTotalSystErr(Double_t pt, Double_t feeddownErr=0) const
void InitD0toKpi2011PbPb3040CentScan()
void InitDplustoKpipi2010PbPb010CentScan()
void InitDplustoKpipi2011PbPb4050CentScan()
void InitDstartoD0pi2013pPb020CL1()
void InitD0toKpi2013pPb60100ZNA()
void InitD0toKpi2013pPb020ZNA()
void InitD0toKpi2010ppLowEn()
Bool_t fIsLowPtAnalysis
flag for the low energy (2.76TeV) run
void SetIsLowPtAnalysis(Bool_t flag)
void InitDstoKKpi2011PbPb07half()
void InitD0toKpi2010PbPb4060CentScan()
void InitDplustoKpipi2010ppPass4()
void Init(Int_t decay)
Function to initialize the variables/histograms.
void SetIspPb2011RapidityScan(Bool_t flag)
void InitD0toKpi2010PbPb1020CentScan()
void InitDstartoD0pi2011PbPb010CentScan()
Double_t GetRawYieldErr(Double_t pt) const
void InitDstoKKpi2010pp()
void InitDplustoKpipi2011PbPb1020CentScan()
void InitDplustoKpipi2013pPb020CL1()
void InitD0toKpi2010ppLowPtAn()
void InitD0toKpi2010PbPb4080()
void InitDstartoD0pi2013pPb2040CL1()
void SetCollisionType(Int_t type)
void InitD0toKpi2011PbPb2030CentScan()
void InitDplustoKpipi2011PbPb07half()
void InitDstartoD0pi2010pp()
void InitDplustoKpipi2013pPb2040ZNA()
void InitD0toKpi2011PbPb010()
void InitDplustoKpipi2013pPb2040V0A()
void InitD0toKpi2011PbPb4050CentScan()
void InitDstartoD0pi2013pPb4060CL1()
void InitDplustoKpipi2013pPb4060CL1()
void InitDplustoKpipi2010PbPb2040CentScan()
void InitD0toKpi2013pPb0100RapScan0101()
Bool_t fIsPass4Analysis
flag for the low pt analysis (no topological cuts)
void DrawErrors(TGraphAsymmErrors *grErrFeeddown=0) const
TH1F * fCutsEff
branching ratio
void InitDstoKKpi2011PbPb010()
void SetRapidity(TString rapidity)
Settings of rapidity ranges for pPb 0-100% CC.
Double_t GetMCPtShapeErr(Double_t pt) const
Int_t fCollisionType
Run Number (year)
void InitDplustoKpipi2013pPb0100RapScan0104()
Int_t GetCollisionType() const
void InitDstartoD0pi2013pPb60100V0A()
void InitD0toKpi2011PbPb3050OutOfPlane()
void InitDstartoD0pi2013pPb0100RapScan0804()
void InitD0toKpi2013pPb0100LowPtAn()
void InitDplustoKpipi2011PbPb2030CentScan()
void SetRunNumber(Int_t number)
Int_t fRunNumber
particle=antiparticle
void InitDstartoD0pi2011PbPb3050()
Bool_t fIsCentScan
flag for the Lc BDT analysis
void InitDplustoKpipi2012pp()
void InitDplustoKpipi2013pPb60100V0A()
void InitD0toKpi2011PbPb3050InPlane()
void InitDplustoKpipi2010PbPb5080CentScan()
void InitLctopKpi2013pPb()
Double_t GetPIDEffErr(Double_t pt) const