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root/cvsroot/UserCode/MitAna/DataTree/interface/CaloTau.h
Revision: 1.3
Committed: Wed Apr 8 10:01:50 2009 UTC (16 years, 1 month ago) by loizides
Content type: text/plain
Branch: MAIN
CVS Tags: Mit_025c_branch2, Mit_025c_branch1, Mit_025c_branch0, Mit_025d, Mit_025c, Mit_025b, Mit_025a, Mit_025, Mit_025pre2, Mit_024b, Mit_025pre1, Mit_024a, Mit_024, Mit_023, Mit_022a, Mit_022, Mit_020d, TMit_020d, Mit_020c, Mit_021, Mit_021pre2, Mit_021pre1, Mit_020b, Mit_020a, Mit_020, Mit_020pre1, Mit_018, Mit_017, Mit_017pre3, Mit_017pre2, Mit_017pre1, Mit_016, Mit_015b, Mit_015a, Mit_015, Mit_014e, Mit_014d, Mit_014c, Mit_014b, Mit_014a, Mit_014, Mit_014pre3, Mit_014pre2, Mit_014pre1, Mit_013d, Mit_013c, Mit_013b, Mit_013a, Mit_013, Mit_013pre1, Mit_012i, Mit_012h, Mit_012g, Mit_012f, Mit_012e, Mit_012d, Mit_012c, Mit_012b, Mit_012a, Mit_012, Mit_011a, Mit_011, Mit_010a, Mit_010, Mit_009c, Mit_009b, Mit_009a, Mit_009
Branch point for: Mit_025c_branch
Changes since 1.2: +60 -46 lines
Log Message:
Have GetCharge for Taus.

File Contents

# Content
1 //--------------------------------------------------------------------------------------------------
2 // $Id: CaloTau.h,v 1.2 2009/03/20 09:37:17 loizides Exp $
3 //
4 // CaloTau
5 //
6 // This class holds information about reconstructed Taus based on calorimeter towers,
7 // ecal basic clusters, and tracks.
8 //
9 // Authors: J.Bendavid
10 //--------------------------------------------------------------------------------------------------
11
12 #ifndef MITANA_DATATREE_CALOTAU_H
13 #define MITANA_DATATREE_CALOTAU_H
14
15 #include "MitAna/DataTree/interface/Tau.h"
16 #include "MitAna/DataCont/interface/RefArray.h"
17 #include "MitAna/DataCont/interface/Ref.h"
18 #include "MitAna/DataTree/interface/Track.h"
19 #include "MitAna/DataTree/interface/BasicCluster.h"
20 #include "MitAna/DataTree/interface/CaloJet.h"
21
22 namespace mithep
23 {
24 class CaloTau : public Tau
25 {
26 public:
27 CaloTau() : fLeadTrackSignD0Sig(0), fLeadTrack3x3HCalEt(0),
28 fLeadTrack3x3HCalDEta(0), fSignalTracksMass(0),
29 fTracksMass(0), fIsoTrackPtSum(0), fIsoECalEtSum(0),
30 fMaxHCalHitEt(0) {}
31 CaloTau(Double_t px, Double_t py, Double_t pz, Double_t e) :
32 Tau(px,py,pz,e),
33 fLeadTrackSignD0Sig(0), fLeadTrack3x3HCalEt(0),
34 fLeadTrack3x3HCalDEta(0), fSignalTracksMass(0),
35 fTracksMass(0), fIsoTrackPtSum(0), fIsoECalEtSum(0),
36 fMaxHCalHitEt(0) {}
37
38 void AddIsoTrack(const Track *t) { fIsoTracks.Add(t); }
39 void AddNeutralBC(const BasicCluster *c) { fNeutralBCs.Add(c); }
40 void AddSignalTrack(const Track *t)
41 { ClearCharge(); fSignalTracks.Add(t); }
42 Double_t IsoECalEtSum() const { return fIsoECalEtSum; }
43 const Track *IsoTrack(UInt_t i) const { return fIsoTracks.At(i); }
44 Double_t IsoTrackPtSum() const { return fIsoTrackPtSum; }
45 const Track *LeadTrack() const { return fLeadTrack.Obj(); }
46 Double_t LeadTrack3x3HCalEt() const { return fLeadTrack3x3HCalEt; }
47 Double_t LeadTrack3x3HCalDEta() const { return fLeadTrack3x3HCalDEta; }
48 Double_t LeadTrackSignedD0Sig() const { return fLeadTrackSignD0Sig; }
49 Double_t MaxHCalHitEt() const { return fMaxHCalHitEt; }
50 UInt_t NIsoTracks() const { return fIsoTracks.Entries(); }
51 const BasicCluster *NeutralBC(UInt_t i) const { return fNeutralBCs.At(i); }
52 UInt_t NNeutralBCs() const { return fNeutralBCs.Entries(); }
53 UInt_t NSignalTracks() const { return fSignalTracks.Entries(); }
54 EObjType ObjType() const { return kCaloTau; }
55 void SetCaloJet(const CaloJet *j) { fCaloJet = j; }
56 void SetIsoECalEtSum(Double_t x) { fIsoECalEtSum = x; }
57 void SetIsoTrackPtSum(Double_t x) { fIsoTrackPtSum = x; }
58 void SetLeadTrack(const Track *t) { fLeadTrack = t; }
59 void SetLeadTrack3x3HCalDEta(Double_t x) { fLeadTrack3x3HCalDEta = x; }
60 void SetLeadTrack3x3HCalEt(Double_t x) { fLeadTrack3x3HCalEt = x; }
61 void SetLeadTrackSignD0Sig(Double_t x) { fLeadTrackSignD0Sig = x; }
62 void SetMaxHCalHitEt(Double_t x) { fMaxHCalHitEt = x; }
63 void SetSignalTracksMass(Double_t x) { fSignalTracksMass = x; }
64 void SetTracksMass(Double_t x) { fTracksMass = x; }
65 const Track *SignalTrack(UInt_t i) const { return fSignalTracks.At(i); }
66 Double_t SignalTracksMass() const { return fSignalTracksMass; }
67 const CaloJet *SourceCaloJet() const { return fCaloJet.Obj(); }
68 const Jet *SourceJet() const { return SourceCaloJet(); }
69 Double_t TracksMass() const { return fTracksMass; }
70
71 protected:
72 Double_t GetCharge() const;
73
74 Double32_t fLeadTrackSignD0Sig; //[0,0,14]signed leading track D0 significance
75 Double32_t fLeadTrack3x3HCalEt; //[0,0,14]hcal 3x3 calo tower et around lead trk
76 Double32_t fLeadTrack3x3HCalDEta; //[0,0,14]abs(delta eta) between lead track
77 // and hottest hcal rec hit in 3x3 region
78 Double32_t fSignalTracksMass; //[0,0,14]invariant mass of signal tracks
79 Double32_t fTracksMass; //[0,0,14]invariant mass of signal + iso tracks
80 Double32_t fIsoTrackPtSum; //[0,0,14]sum pt of tracks in isolation annulus
81 Double32_t fIsoECalEtSum; //[0,0,14]sum et of ecal rechits in iso annulus
82 Double32_t fMaxHCalHitEt; //[0,0,14]et of largest et hcal rechit
83 Ref<Track> fLeadTrack; //leading track in signal cone
84 Ref<CaloJet> fCaloJet; //original reconstructed calo jet
85 RefArray<Track> fSignalTracks; //tracks in signal cone
86 RefArray<Track> fIsoTracks; //tracks in isolation annulus
87 RefArray<BasicCluster> fNeutralBCs; //neutral Ecal basic clusters
88
89 ClassDef(CaloTau, 1) // CaloTau class
90 };
91 }
92
93 //--------------------------------------------------------------------------------------------------
94 inline Double_t mithep::CaloTau::GetCharge() const
95 {
96 // Get charge from signal tracks.
97
98 Double_t sumq = 0;
99 for (UInt_t i=0; i<fSignalTracks.Entries(); ++i) {
100 sumq += fSignalTracks.At(i)->Charge();
101 }
102 return sumq;
103 }
104 #endif