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a5556ea5 1#ifndef ALIAODPARTICLE_H
2#define ALIAODPARTICLE_H
afa8b37b 3//___________________________________________________________
a5556ea5 4/////////////////////////////////////////////////////////////
5//
afa8b37b 6// class AliAODParticle
7//
8// Ali HBT Particle: simplified class TParticle
9// Simplified in order to minimize the size of the object
10// - we want to keep a lot of such a objects in memory
11// Additionaly adjusted for HBT Analysies purposes
12// + pointer to Track Points
13// + pointer to Cluster Map(s)
14//
15// Piotr.Skowronski@cern.ch
a5556ea5 16//
17/////////////////////////////////////////////////////////////
18
afa8b37b 19#include "AliVAODParticle.h"
0206ddfb 20#include <TLorentzVector.h>
21#include <TMath.h>
afa8b37b 22#include <TDatabasePDG.h>
a5556ea5 23
a5556ea5 24
afa8b37b 25class TParticle;
a5556ea5 26class AliTrackPoints;
27class AliClusterMap;
28
afa8b37b 29class AliAODParticle: public AliVAODParticle
30{
a5556ea5 31public:
afa8b37b 32 // ****** constructors and destructor
33 AliAODParticle();
34 AliAODParticle(const AliAODParticle& in);
78d7c6d3 35 AliAODParticle(const AliVAODParticle& in);
afa8b37b 36
37 AliAODParticle(Int_t pdg, Int_t idx, Double_t px, Double_t py, Double_t pz, Double_t etot,
38 Double_t vx, Double_t vy, Double_t vz, Double_t time);
39
40 AliAODParticle(Int_t pdg, Float_t prob, Int_t idx, Double_t px, Double_t py, Double_t pz, Double_t etot,
41 Double_t vx, Double_t vy, Double_t vz, Double_t time);
42
43 AliAODParticle(const TParticle& p, Int_t idx);
44
45 virtual ~AliAODParticle();
46
47 AliAODParticle& operator=(const AliAODParticle& in);
66826ea4 48 AliVAODParticle& operator=(const AliVAODParticle& in);
afa8b37b 49
dd2b6810 50 void Clear(Option_t* /*option*/ ="");//Must be implemented in order to store this object in Clones Array
295c08ac 51
afa8b37b 52 void SetPIDprobability(Int_t pdg, Float_t prob = 1.0);
53 Float_t GetPIDprobability(Int_t pdg) const;
54 Double_t GetProbability(Int_t pdg) const {return GetPIDprobability(pdg);}
78d7c6d3 55
afa8b37b 56 Int_t GetMostProbable() const { return (fPids)?fPids[0]:0;}
57
58 Int_t GetPdgCode () const { return (fPids)?fPids[fPdgIdx]:0;}
59
dd2b6810 60 Double_t GetPidProb () const { return (fPidProb)?fPidProb[fPdgIdx]:0;}
afa8b37b 61
62 Int_t GetUID () const { return fIdxInEvent;}
63 Int_t GetNumberOfPids () const { return fNPids;}
64 Int_t GetNthPid (Int_t idx) const;
65 Float_t GetNthPidProb (Int_t idx) const;
66
67 void SetPdgCode(Int_t pdg, Float_t prob = 1.0);
68 Double_t GetCalcMass () const { return fCalcMass; }
69 Double_t Mass () const { return (GetPDG())?GetPDG()->Mass():-1.;}
70
71
72 TParticlePDG* GetPDG () const {return TDatabasePDG::Instance()->GetParticle(GetPdgCode());}
73 Double_t Charge () const { return (GetPDG())?GetPDG()->Charge():1.e8;}
74
75 Int_t Beauty () { return GetPDG()->Beauty(); }
76 Int_t Charm () { return GetPDG()->Charm(); }
77 Int_t Strangeness () { return GetPDG()->Strangeness();}
78 void ProductionVertex(TLorentzVector &v) const { v.SetXYZT(fVx,fVy,fVz,fVt);}
79
80
81 Double_t Vx () const { return fVx;}
82 Double_t Vy () const { return fVy;}
83 Double_t Vz () const { return fVz;}
84 Double_t T () const { return fVt;}
85
86 Double_t Px () const { return fPx; } //X coordinate of the momentum
87 Double_t Py () const { return fPy; } //Y coordinate of the momentum
88 Double_t Pz () const { return fPz; } //Z coordinate of the momentum
89 Double_t P () const //momentum
90 { return TMath::Sqrt(fPx*fPx+fPy*fPy+fPz*fPz); }
91
92 void Momentum(TLorentzVector &v) const { v.SetPxPyPzE(fPx,fPy,fPz,fE);}
93
94 Double_t Pt () const //transverse momentum
95 { return TMath::Sqrt(fPx*fPx+fPy*fPy); }
b9eb3bc7 96 Double_t E() const { return fE; }
afa8b37b 97
98 //Pseudo Rapidity
99 Double_t Eta () const { if (P() != fPz) return 0.5*TMath::Log((P()+fPz)/(P()-fPz));
100 else return 1.e30;}
101
102 //Rapidity
103 Double_t Y () const { if (fE != fPz) return 0.5*TMath::Log((fE+fPz)/(fE-fPz));
104 else return 1.e30;}
105
106 Double_t Phi () const { return TMath::Pi()+TMath::ATan2(-fPy,-fPx); }
107
108 Double_t Theta () const { return (fPz==0)?TMath::PiOver2():TMath::ACos(fPz/P()); }
109
110 // setters
111
112 void SetMomentum(Double_t px, Double_t py, Double_t pz, Double_t e)
113 {fPx=px; fPy=py; fPz=pz; fE=e;}
114 void SetMomentum(const TLorentzVector& p)
115 {SetMomentum(p.Px(),p.Py(),p.Pz(),p.Energy());}
116
117 void SetProductionVertex(Double_t vx, Double_t vy, Double_t vz, Double_t t)
118 {fVx=vx; fVy=vy; fVz=vz; fVt=t;}
119 void SetProductionVertex(const TLorentzVector& v)
120 {SetProductionVertex(v.X(),v.Y(),v.Z(),v.T());}
121 void SetCalcMass(Double_t mass) {fCalcMass = mass;}
122
78d7c6d3 123 void SetUID(Int_t id){fIdxInEvent = id;}
afa8b37b 124
78d7c6d3 125 const Char_t* GetName() const;
201c7e13 126 void Print(const Option_t * opt = "") const;
afa8b37b 127
78d7c6d3 128 void SetTPCTrackPoints(AliTrackPoints* tpts){fTPCTrackPoints = tpts;}
129 AliTrackPoints* GetTPCTrackPoints() const {return fTPCTrackPoints;}
130 void SetITSTrackPoints(AliTrackPoints* tpts){fITSTrackPoints = tpts;}
131 AliTrackPoints* GetITSTrackPoints() const {return fITSTrackPoints;}
132 void SetClusterMap(AliClusterMap* cm){fClusterMap = cm;}
133 AliClusterMap* GetClusterMap() const {return fClusterMap;}
afa8b37b 134
135
136protected:
137 Int_t GetPidSlot(Int_t pdg) const;//returns position of the given PID in fPids (and fPidProb) array.
a5556ea5 138
139private:
afa8b37b 140 Char_t fPdgIdx; // index of PDG code of the particle in fPids
141 Int_t fIdxInEvent; // index of a particle: the same particle can appear in the event
142 // many times with different pid's. Idx allows to check that they are the same particles
143 Int_t fNPids; // number of non-zero proboble Pids
144 Int_t *fPids; // [fNPids] Array with PIDs
145 Float_t *fPidProb; // [fNPids] PIDs probabilities
146 Double_t fCalcMass; // Calculated mass
147
148
149 Double_t fPx; // x component of momentum
150 Double_t fPy; // y component of momentum
151 Double_t fPz; // z component of momentum
152 Double_t fE; // Energy
153
154 Double_t fVx; // x of production vertex
155 Double_t fVy; // y of production vertex
156 Double_t fVz; // z of production vertex
157 Double_t fVt; // t of production vertex
a5556ea5 158
78d7c6d3 159 AliTrackPoints* fTPCTrackPoints; // track positions along trajectory - used by anti-merging cut
160 AliTrackPoints* fITSTrackPoints; // track positions along trajectory - used by anti-merging cut
afa8b37b 161 AliClusterMap* fClusterMap; // bit map of cluters occupation; 1 if has cluter on given layer/padrow/...
162
163 ClassDef(AliAODParticle,3) // TParticle vertex particle information
a5556ea5 164};
165
166#endif