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//--------------------------------------------------------------------------------------------------
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// $Id: Photon.h,v 1.23 2009/03/03 18:03:06 bendavid Exp $
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1.1 |
//
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// Photon
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//
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1.24 |
// This class holds the reconstructed photon quantities.
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1.1 |
//
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1.2 |
// Authors: J.Bendavid, C.Loizides
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1.1 |
//--------------------------------------------------------------------------------------------------
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1.12 |
#ifndef MITANA_DATATREE_PHOTON_H
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#define MITANA_DATATREE_PHOTON_H
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1.1 |
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1.24 |
#include "MitCommon/DataFormats/interface/Vect4M.h"
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1.4 |
#include "MitAna/DataTree/interface/Types.h"
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bendavid |
1.3 |
#include "MitAna/DataTree/interface/Particle.h"
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#include "MitAna/DataTree/interface/Conversion.h"
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1.11 |
#include "MitAna/DataCont/interface/RefArray.h"
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1.1 |
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namespace mithep
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{
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bendavid |
1.3 |
class Photon : public Particle
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1.1 |
{
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public:
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1.24 |
Photon() : fR9(0),fHadOverEm(0),fEcalRecHitIso(0),fHcalRecHitIso(0),fSolidConeTrkIso(0),
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fHollowConeTrkIso(0),fSolidConeNTrk(0),fHollowConeNTrk(0),fHasPixelSeed(0),
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fIsEBGap(0),fIsEEGap(0),fIsEBEEGap(0),fIsLooseEM(0),fIsLoosePhoton(0),
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fIsTightPhoton(0),fIsConverted(0) {}
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Photon(Double_t px, Double_t py, Double_t pz, Double_t e) :
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1.24 |
fMom(FourVector(px,py,pz,e)),
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fR9(0),fHadOverEm(0),fEcalRecHitIso(0),fHcalRecHitIso(0),fSolidConeTrkIso(0),
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fHollowConeTrkIso(0),fSolidConeNTrk(0),fHollowConeNTrk(0),fHasPixelSeed(0),
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fIsEBGap(0),fIsEEGap(0),fIsEBEEGap(0),fIsLooseEM(0),fIsLoosePhoton(0),
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fIsTightPhoton(0),fIsConverted(0) {}
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1.2 |
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1.19 |
const Conversion *ConvCand(UInt_t i) const { return fConversions.At(i); }
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Double_t EcalRecHitIso() const { return fEcalRecHitIso; }
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1.16 |
Double_t HadOverEm() const { return fHadOverEm; }
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1.24 |
Bool_t HasPixelSeed() const { return fHasPixelSeed; }
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1.16 |
Double_t HcalRecHitIso() const { return fHcalRecHitIso; }
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1.24 |
UShort_t HollowConeNTrk() const { return fHollowConeNTrk; }
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1.16 |
Double_t HollowConeTrkIso() const { return fHollowConeTrkIso; }
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Bool_t IsEBGap() const { return fIsEBGap; }
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Bool_t IsEEGap() const { return fIsEEGap; }
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Bool_t IsEBEEGap() const { return fIsEBEEGap; }
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Bool_t IsLooseEM() const { return fIsLooseEM; }
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Bool_t IsLoosePhoton() const { return fIsLoosePhoton; }
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Bool_t IsTightPhoton() const { return fIsTightPhoton; }
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Bool_t IsConverted() const { return fIsConverted; }
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loizides |
1.21 |
UInt_t NConversions() const { return fConversions.Entries(); }
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EObjType ObjType() const { return kPhoton; }
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Double_t R9() const { return fR9; }
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const SuperCluster *SCluster() const { return fSuperClusterRef.Obj(); }
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Double_t SolidConeTrkIso() const { return fSolidConeTrkIso; }
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UShort_t SolidConeNTrk() const { return fSolidConeNTrk; }
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void AddConversion(const Conversion *c) { fConversions.Add(c); }
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1.21 |
void SetIsConverted(Bool_t isConv) { fIsConverted = isConv; }
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1.2 |
void SetMom(Double_t px, Double_t py, Double_t pz, Double_t e);
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bendavid |
1.20 |
void SetSuperCluster(const SuperCluster* sc) { fSuperClusterRef = sc; }
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1.16 |
void SetR9(Double_t x) { fR9 = x; }
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void SetHadOverEm(Double_t x) { fHadOverEm = x; }
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1.24 |
void SetHasPixelSeed(Bool_t x) { fHasPixelSeed = x; }
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1.16 |
void SetEcalRecHitIso(Double_t x) { fEcalRecHitIso = x; }
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void SetHcalRecHitIso(Double_t x) { fHcalRecHitIso = x; }
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void SetSolidConeTrkIso(Double_t x) { fSolidConeTrkIso = x; }
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void SetHollowConeTrkIso(Double_t x) { fHollowConeTrkIso = x; }
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1.24 |
void SetSolidConeNTrk(UShort_t x) { fSolidConeNTrk = x; }
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void SetHollowConeNTrk(UShort_t x) { fHollowConeNTrk = x; }
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1.16 |
void SetIsEBGap(Bool_t x) { fIsEBGap = x; }
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void SetIsEEGap(Bool_t x) { fIsEEGap = x; }
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void SetIsEBEEGap(Bool_t x) { fIsEBEEGap = x; }
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void SetIsLooseEM(Bool_t x) { fIsLooseEM = x; }
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void SetIsLoosePhoton(Bool_t x) { fIsLoosePhoton = x; }
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void SetIsTightPhoton(Bool_t x) { fIsTightPhoton = x; }
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loizides |
1.1 |
protected:
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1.21 |
void GetMom() const;
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1.24 |
Vect4M fMom; //four momentum vector
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Double32_t fR9; //[0,0,14]r9=e3x3/etotal variable
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Double32_t fHadOverEm; //[0,0,14]hadronic over em fraction
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Double32_t fEcalRecHitIso; //[0,0,14]ecal rechit based isolation
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Double32_t fHcalRecHitIso; //[0,0,14]hcal rechit based isolation
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Double32_t fSolidConeTrkIso; //[0,0,14]sum track pT in cone of dR
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Double32_t fHollowConeTrkIso; //[0,0,14]as above excluding the core
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UShort_t fSolidConeNTrk; //number of tracks in a cone of dR
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UShort_t fHollowConeNTrk; //as above excluding the core
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Bool_t fHasPixelSeed; //=true if super cluster has matched seed
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Bool_t fIsEBGap; //=true photon is in ECAL barrel
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Bool_t fIsEEGap; //=true photon is in ECAL endcap
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Bool_t fIsEBEEGap; //=true photon is in boundary between EB/EE
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Bool_t fIsLooseEM; //=true if loose em cuts are passed
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Bool_t fIsLoosePhoton; //=true if loose photon cuts are passed
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Bool_t fIsTightPhoton; //=true if tight photon cuts are passed
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Bool_t fIsConverted; //=true if photon converted
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RefArray<Conversion> fConversions; //refs to associated conversion candidates
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Ref<SuperCluster> fSuperClusterRef; //ref to associated super cluster
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1.1 |
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1.2 |
ClassDef(Photon,1) // Photon class
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1.1 |
};
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}
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loizides |
1.2 |
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//--------------------------------------------------------------------------------------------------
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loizides |
1.21 |
inline void mithep::Photon::GetMom() const
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{
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// Get momentum values from stored values.
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1.24 |
fCachedMom.SetCoordinates(fMom.Pt(),fMom.Eta(),fMom.Phi(),fMom.M());
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1.21 |
}
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//--------------------------------------------------------------------------------------------------
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1.2 |
inline void mithep::Photon::SetMom(Double_t px, Double_t py, Double_t pz, Double_t e)
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{
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1.21 |
// Set momentum vector.
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loizides |
1.2 |
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1.21 |
fMom.SetXYZT(px, py, pz, e);
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bendavid |
1.22 |
ClearMom();
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loizides |
1.2 |
}
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1.1 |
#endif
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