]> git.uio.no Git - u/mrichter/AliRoot.git/blame - STEER/AliAODJet.h
Removed cut on TPC clusters (cannot be done for AOD tracks)
[u/mrichter/AliRoot.git] / STEER / AliAODJet.h
CommitLineData
df9db588 1#ifndef AliAODJet_H
2#define AliAODJet_H
3/* Copyright(c) 1998-2007, ALICE Experiment at CERN, All rights reserved. *
4 * See cxx source for full Copyright notice */
5
6/* $Id$ */
7
8//-------------------------------------------------------------------------
87102d3c 9// AOD jet class
10// Author: Andreas Morsch, CERN
df9db588 11//-------------------------------------------------------------------------
12
87102d3c 13#include <TLorentzVector.h>
ff7c57dd 14#include "AliVParticle.h"
2e7293a2 15#include <TArrayI.h>
df9db588 16#include "AliAODVertex.h"
17
87102d3c 18
ff7c57dd 19class AliAODJet : public AliVParticle {
df9db588 20
21 public:
87102d3c 22 AliAODJet();
23 AliAODJet(Double_t px, Double_t py, Double_t pz, Double_t e);
a1708071 24 AliAODJet(TLorentzVector & p);
87102d3c 25 virtual ~AliAODJet();
26 AliAODJet(const AliAODJet& jet);
27 AliAODJet& operator=(const AliAODJet& jet);
ff7c57dd 28// AliVParticle methods
87102d3c 29 virtual Double_t Px() const { return fMomentum->Px(); }
30 virtual Double_t Py() const { return fMomentum->Py(); }
31 virtual Double_t Pz() const { return fMomentum->Pz(); }
32 virtual Double_t Pt() const { return fMomentum->Pt(); }
33 virtual Double_t P() const { return fMomentum->P(); }
34 virtual Double_t OneOverPt() const { return 1. / fMomentum->Pt(); }
c683ddc2 35 virtual Bool_t PxPyPz(Double_t p[3]) const { p[0] = Px(); p[1] = Py(); p[2] = Pz(); return kTRUE; }
4124c6c5 36 virtual Double_t Phi() const;
87102d3c 37 virtual Double_t Theta() const { return fMomentum->Theta(); }
38 virtual Double_t E() const { return fMomentum->E(); }
39 virtual Double_t M() const { return fMomentum->M(); }
40 virtual Double_t Eta() const { return fMomentum->Eta(); }
41 virtual Double_t Y() const { return fMomentum->Rapidity();}
c683ddc2 42 virtual Double_t Xv() const {return -999.;} // put reasonable values here
43 virtual Double_t Yv() const {return -999.;} //
44 virtual Double_t Zv() const {return -999.;} //
45 virtual Bool_t XvYvZv(Double_t x[3]) const { x[0] = Xv(); x[1] = Yv(); x[2] = Zv(); return kTRUE; }
a5817b6b 46 virtual Bool_t IsTriggeredEMCAL(){return (fTrigger&kEMCALTriggered)==kEMCALTriggered;}
47 virtual Bool_t IsTriggeredTRD(){return (fTrigger&kTRDTriggered)==kTRDTriggered;}
48 virtual UChar_t Trigger(){return fTrigger;}
4124c6c5 49
2e7293a2 50 virtual void AddTrack(TObject *tr) {fRefTracks->Add(tr);}
51 TObject* GetTrack(Int_t i) {return fRefTracks->At(i);}
87102d3c 52 virtual void SetBgEnergy(Double_t bgEnCh, Double_t bgEnNe)
53 {fBackgEnergy[0] = bgEnCh; fBackgEnergy[1] = bgEnNe;}
a5817b6b 54 virtual void SetEffArea(Double_t effACh, Double_t effANe, Double_t effAErrCh = 0, Double_t effAErrNe = 0)
55 {
56 fEffectiveArea[0] = effACh; fEffectiveArea[1] = effANe;
57 fEffectiveAreaError[0] = effAErrCh;
58 fEffectiveAreaError[1] = effAErrNe;
59 }
944efc80 60 virtual void SetPxPyPzE(Double_t px, Double_t py, Double_t pz, Double_t e);
a5817b6b 61 virtual void SetTrigger(UChar_t f){fTrigger |= f;}
62 virtual void ResetTrigger(UChar_t f){fTrigger &= ~f;}
944efc80 63
2e7293a2 64 virtual TRefArray* GetRefTracks() const { return fRefTracks;}
65 virtual Double_t ChargedBgEnergy() const { return fBackgEnergy[0];}
66 virtual Double_t NeutralBgEnergy() const { return fBackgEnergy[1];}
67 virtual Double_t TotalBgEnergy() const { return (fBackgEnergy[0] + fBackgEnergy[1]);}
87102d3c 68
2e7293a2 69 virtual Double_t EffectiveAreaCharged() const { return fEffectiveArea[0];}
70 virtual Double_t EffectiveAreaNeutral() const { return fEffectiveArea[1];}
a5817b6b 71 virtual Double_t ErrorEffectiveAreaCharged() const { return fEffectiveAreaError[0];}
72 virtual Double_t ErrorEffectiveAreaNeutral() const { return fEffectiveAreaError[1];}
a19f293d 73 virtual Double_t DeltaR(const AliVParticle* part);
87102d3c 74
a19f293d 75
66ac9c97 76 TLorentzVector* MomentumVector() const {return fMomentum;}
a19f293d 77 virtual void Print(Option_t* /*option*/) const;
87102d3c 78
79// Dummy
80 virtual Short_t Charge() const { return 0;}
81 virtual const Double_t* PID() const { return NULL;}
3c43fb2b 82 virtual Int_t GetLabel() const { return -1;}
87102d3c 83//
3a4dcedf 84
a5817b6b 85
86
87
3a4dcedf 88 /** Compare this class with an other instance of this class
89 * used in a TClonesArray::Sort()
90 * @param obj ptr to other instance
91 * @return Returns 0 when equal, 1 when this is smaller
92 * and -1 when bigger -- sorts descending
93 */
94 Int_t Compare( const TObject* obj) const;
87102d3c 95
96
3a4dcedf 97 /** Defines this class as being sortable in a TClonesArray
98 * @return always kTRUE;
99 */
100 Bool_t IsSortable() const { return kTRUE; }
101
a5817b6b 102 // first only one bit for EMCAL and TRD, leave space for more
103 // trigger types and/or other detectors
104 enum {kEMCALTriggered = 1<<0,
105 kTRDTriggered = 4<<0};
106
9333290e 107
a5817b6b 108 private:
109 Double32_t fBackgEnergy[2]; // Subtracted background energy
110 Double32_t fEffectiveArea[2]; // Effective jet area used for background subtraction
111 Double32_t fEffectiveAreaError[2]; //[0,1,10] relative error of jet areas, 10 bit precision
112 Double32_t fNeutralFraction; //[0,1,12] Neutral fraction between 0 and 1 12 bit precision;
113 UChar_t fTrigger; // Bit mask to flag jets triggered by a certain detector
87102d3c 114 TLorentzVector* fMomentum; // Jet 4-momentum vector
2e7293a2 115 TRefArray* fRefTracks; // array of references to the tracks belonging to the jet
9333290e 116
a5817b6b 117 ClassDef(AliAODJet,5);
4124c6c5 118
df9db588 119};
120
4124c6c5 121inline Double_t AliAODJet::Phi() const
122{
123 // Return phi
124 Double_t phi = fMomentum->Phi();
125 if (phi < 0.) phi += 2. * TMath::Pi();
126 return phi;
127}
128
df9db588 129#endif