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// $Id: JPTJet.h,v 1.6 2010/02/21 23:42:00 bendavid Exp $
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//
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// JPTJet
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//
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// This class holds information about reconstructed jet based on jpt corrections.
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//
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// Authors: J.Bendavid
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//--------------------------------------------------------------------------------------------------
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#ifndef MITANA_DATATREE_JPTJET_H
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#define MITANA_DATATREE_JPTJET_H
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#include "MitAna/DataTree/interface/Jet.h"
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#include "MitAna/DataCont/interface/Ref.h"
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namespace mithep
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{
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class JPTJet : public Jet
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{
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public:
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JPTJet() : fZSPCor(0), fChargedHadronEnergy(0), fNeutralHadronEnergy(0),
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fChargedEmEnergy(0), fNeutralEmEnergy(0), fResponseOfChargedWithEff(0),
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fResponseOfChargedWithoutEff(0), fSumPtOfChargedWithEff(0),
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fSumPtOfChargedWithoutEff(0), fSumEnergyOfChargedWithEff(0),
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fSumEnergyOfChargedWithoutEff(0), fR2momtr(0), fEta2momtr(0),
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fPhi2momtr(0), fPout(0), fZch(0), fChargedMultiplicity(0), fMuonMultiplicity(0),
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fElectronMultiplicity(0) {}
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JPTJet(Double_t px, Double_t py, Double_t pz, Double_t e) :
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Jet(px,py,pz,e),
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fZSPCor(0), fChargedHadronEnergy(0), fNeutralHadronEnergy(0),
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fChargedEmEnergy(0), fNeutralEmEnergy(0), fResponseOfChargedWithEff(0),
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fResponseOfChargedWithoutEff(0), fSumPtOfChargedWithEff(0),
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fSumPtOfChargedWithoutEff(0), fSumEnergyOfChargedWithEff(0),
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fSumEnergyOfChargedWithoutEff(0), fR2momtr(0), fEta2momtr(0),
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fPhi2momtr(0), fPout(0), fZch(0), fChargedMultiplicity(0), fMuonMultiplicity(0),
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fElectronMultiplicity(0) {}
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Double_t ZSPCor() const { return fZSPCor; }
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Double_t ChargedHadronEnergy() const { return fChargedHadronEnergy; }
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Double_t NeutralHadronEnergy() const { return fNeutralHadronEnergy; }
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Double_t ChargedEmEnergy() const { return fChargedEmEnergy; }
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Double_t NeutralEmEnergy() const { return fNeutralEmEnergy; }
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Double_t ResponseOfChargedWithEff() const { return fResponseOfChargedWithEff; }
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Double_t ResponseOfChargedWithoutEff() const { return fResponseOfChargedWithoutEff; }
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Double_t SumPtOfChargedWithEff() const { return fSumPtOfChargedWithEff; }
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Double_t SumPtOfChargedWithoutEff() const { return fSumPtOfChargedWithoutEff; }
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Double_t SumEnergyOfChargedWithEff() const { return fSumEnergyOfChargedWithEff; }
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Double_t SumEnergyOfChargedWithoutEff() const { return fSumEnergyOfChargedWithoutEff; }
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Double_t R2momtr() const { return fR2momtr; }
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Double_t Eta2momtr() const { return fEta2momtr; }
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Double_t Phi2momtr() const { return fPhi2momtr; }
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Double_t Pout() const { return fPout; }
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Double_t Zch() const { return fZch; }
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UInt_t ChargedMultiplicity() const { return fChargedMultiplicity; }
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UInt_t MuonMultiplicity() const { return fMuonMultiplicity; }
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UInt_t ElectronMultiplicity() const { return fElectronMultiplicity; }
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Jet *MakeCopy() const { return new JPTJet(*this); }
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EObjType ObjType() const { return kJPTJet; }
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const Jet *OriginalJet() const { return fOriginalJet.Obj(); }
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void SetZSPCor(Double_t x) { fZSPCor = x; }
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void SetChargedHadronEnergy(Double_t x) { fChargedHadronEnergy = x; }
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void SetNeutralHadronEnergy(Double_t x) { fNeutralHadronEnergy = x; }
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void SetChargedEmEnergy(Double_t x) { fChargedEmEnergy = x; }
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void SetNeutralEmEnergy(Double_t x) { fNeutralEmEnergy = x; }
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void SetResponseOfChargedWithEff(Double_t x) { fResponseOfChargedWithEff = x; }
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void SetResponseOfChargedWithoutEff(Double_t x) { fResponseOfChargedWithoutEff = x; }
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void SetSumPtOfChargedWithEff(Double_t x) { fSumPtOfChargedWithEff = x; }
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void SetSumPtOfChargedWithoutEff(Double_t x) { fSumPtOfChargedWithoutEff = x; }
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void SetSumEnergyOfChargedWithEff(Double_t x) { fSumEnergyOfChargedWithEff = x; }
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void SetSumEnergyOfChargedWithoutEff(Double_t x) { fSumEnergyOfChargedWithoutEff = x; }
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void SetR2momtr(Double_t x) { fR2momtr = x; }
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void SetEta2momtr(Double_t x) { fEta2momtr = x; }
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void SetPhi2momtr(Double_t x) { fPhi2momtr = x; }
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void SetPout(Double_t x) { fPout = x; }
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void SetZch(Double_t x) { fZch = x; }
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void SetChargedMultiplicity(UInt_t n) { fChargedMultiplicity = n; }
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void SetMuonMultiplicity(UInt_t n) { fMuonMultiplicity = n; }
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void SetElectronMultiplicity(UInt_t n) { fElectronMultiplicity = n; }
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void SetOriginalJet(const Jet *j) { fOriginalJet = j; }
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protected:
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Double32_t fZSPCor; //[0,0,14]ZSP correction
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Double32_t fChargedHadronEnergy; //[0,0,14]charged hadron energy
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Double32_t fNeutralHadronEnergy; //[0,0,14]neutral hadron energy
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Double32_t fChargedEmEnergy; //[0,0,14]charged em energy
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Double32_t fNeutralEmEnergy; //[0,0,14]neutral em energy
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Double32_t fResponseOfChargedWithEff; //[0,0,14]
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Double32_t fResponseOfChargedWithoutEff; //[0,0,14]
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Double32_t fSumPtOfChargedWithEff; //[0,0,14]
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Double32_t fSumPtOfChargedWithoutEff; //[0,0,14]
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Double32_t fSumEnergyOfChargedWithEff; //[0,0,14]
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Double32_t fSumEnergyOfChargedWithoutEff; //[0,0,14]
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Double32_t fR2momtr; //[0,0,14]
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Double32_t fEta2momtr; //[0,0,14]
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Double32_t fPhi2momtr; //[0,0,14]
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Double32_t fPout; //[0,0,14]
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Double32_t fZch; //[0,0,14]
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UInt_t fChargedMultiplicity; //number of charged constituents
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UInt_t fMuonMultiplicity; //number of muon constituents
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UInt_t fElectronMultiplicity; //number of muon constituents
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Ref<Jet> fOriginalJet; //reference to original CaloJet
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ClassDef(JPTJet, 1) // JPTJet class
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};
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}
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#endif
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