1 #ifndef ALIANALYSISTASKEMCALMISSINGENERGY_H 2 #define ALIANALYSISTASKEMCALMISSINGENERGY_H Float_t * N_subjettiness(AliEmcalJet *mainJet, Int_t jetContNb)
JetSelectionType fJetSelection
Bool_t RetrieveEventObjects()
Retrieve common objects from event.
Float_t fMinFractionShared
Float_t Circularity(AliEmcalJet *jet, Int_t jetContNb)
Float_t GetJetMass(AliEmcalJet *jet, Int_t jetContNb)
void SetTrackPtMin(Float_t f)
void SetJetShapeSub(JetShapeSub t)
void Terminate(Option_t *option)
void SetHolePos(Float_t poshole)
void SetMinCentrality(Float_t t)
void SetHoleWidth(Float_t holewidth)
Double_t RelativePhiFancy(Double_t mphi, Double_t vphi)
Float_t Tau2Num(AliEmcalJet *jet, AliEmcalJet *subJet1hardest, AliEmcalJet *subJet2hardest, Int_t jetContNb)
void SetRMatching(Float_t f)
void SetPtTriggerSelections(Float_t minpT, Float_t maxpT)
void SetSemigoodCorrect(Int_t yesno)
Bool_t Run()
Run function. This is the core function of the analysis and contains the user code. Therefore users have to implement this function.
void SetCentralitySelectionOn(Bool_t t)
Float_t GetJetAngularity(AliEmcalJet *jet, Int_t jetContNb)
Bool_t FillHistograms()
Function filling histograms.
Float_t GetJetpTD(AliEmcalJet *jet, Int_t jetContNb)
Float_t * fSubstructureVar
TH2F * fhTau2OverTau1vsJetPt
Float_t Tau1Num(AliEmcalJet *jet, AliEmcalJet *subJet1hardest, Int_t jetContNb)
Float_t LeSub(AliEmcalJet *jet, Int_t jetContNb)
TH2F * fhdPhiTrigVSjetPtNOCUT
void SetJetRadius(Float_t f)
Float_t GetMaxPtTriggerSelection()
AliAnalysisTaskEmcalMissingEnergy & operator=(const AliAnalysisTaskEmcalMissingEnergy &)
Float_t GetJetLeSub(AliEmcalJet *jet, Int_t jetContNb)
Float_t GetJetCircularity(AliEmcalJet *jet, Int_t jetContNb)
JetShapeType fJetShapeType
Float_t * fHadronTriggerVar
Double_t Minimum(Double_t x, Double_t y)
TH3F * fhTau1vsTau2vsTau3
Float_t GetMinPtTriggerSelection()
Float_t Tau3Num(AliEmcalJet *jet, AliEmcalJet *subJet1hardest, AliEmcalJet *subJet2hardest, AliEmcalJet *subJet3hardest, Int_t jetContNb)
void SetMinFractionShared(Double_t f)
void SetJetSelection(JetSelectionType t)
TH3F * fhdPhiPartVSjetPtVSPartPt
virtual ~AliAnalysisTaskEmcalMissingEnergy()
void SetAngularWindowRecoilJet(Float_t t)
Double_t R_distance(Double_t phi1, Double_t eta1, Double_t phi2, Double_t eta2)
void SetSubJetRadius(Float_t f)
Float_t TauDen(AliEmcalJet *mainJet, Int_t jetContNb)
AliAnalysisTaskEmcalMissingEnergy()
Float_t GetSigma2(AliEmcalJet *jet, Int_t jetContNb)
Double_t RelativePhi(Double_t mphi, Double_t vphi)
Float_t GetJetNumberOfConstituents(AliEmcalJet *jet, Int_t jetContNb)
Int_t * JetHard(AliEmcalJetFinder *finder)
void SetJetShapeType(JetShapeType t)
void SetJetPtMin(Float_t f)
Int_t SelectTrigger(Float_t minpT, Float_t maxpT)
Float_t Tau1Num_full(AliEmcalJet *mainJet, AliEmcalJetFinder *finder, Int_t jetContNb)
Base task in the EMCAL jet framework.
Represent a jet reconstructed using the EMCal jet framework.
void SetJetPtThreshold(Float_t f)
Float_t Angularity(AliEmcalJet *jet, Int_t jetContNb)
Float_t Sigma2(AliEmcalJet *jet, Int_t jetContNb)
void SetJetContainer(Int_t c)
Float_t PTD(AliEmcalJet *jet, Int_t jetContNb)
Container for jet within the EMCAL jet framework.
void SetMaxCentrality(Float_t t)
void UserCreateOutputObjects()