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root/cvsroot/UserCode/MitAna/DataTree/interface/SuperCluster.h
Revision: 1.18
Committed: Fri Jun 25 15:12:58 2010 UTC (14 years, 10 months ago) by bendavid
Content type: text/plain
Branch: MAIN
CVS Tags: Mit_014c, Mit_014b
Changes since 1.17: +7 -2 lines
Log Message:
Add supercluster-calotower associations

File Contents

# Content
1 //--------------------------------------------------------------------------------------------------
2 // $Id: SuperCluster.h,v 1.17 2010/03/26 15:09:11 sixie Exp $
3 //
4 // SuperCluster
5 //
6 // This class holds the super cluster information.
7 //
8 // Authors: S.Xie
9 //--------------------------------------------------------------------------------------------------
10
11 #ifndef MITANA_DATATREE_SUPERCLUSTER_H
12 #define MITANA_DATATREE_SUPERCLUSTER_H
13
14 #include <TMath.h>
15 #include "MitCommon/DataFormats/interface/Vect3C.h"
16 #include "MitAna/DataTree/interface/DataObject.h"
17 #include "MitAna/DataTree/interface/BasicCluster.h"
18 #include "MitAna/DataTree/interface/CaloTower.h"
19 #include "MitAna/DataCont/interface/RefArray.h"
20 #include "MitAna/DataCont/interface/Ref.h"
21
22 namespace mithep
23 {
24 class SuperCluster : public DataObject
25 {
26 public:
27 SuperCluster() : fEnergy(0), fEtaWidth(0), fPreshowerEnergy(0),
28 fPhiWidth(0), fRawEnergy(0) {}
29
30 void AddCluster(const BasicCluster *c) { fClusters.Add(c); }
31 void AddTower(const CaloTower *t) { fCaloTowers.Add(t); }
32 const BasicCluster *Cluster(UInt_t i) const { return fClusters.At(i); }
33 UInt_t ClusterSize() const { return fClusters.Entries(); }
34 Int_t Compare(const TObject *o) const;
35 Double_t Energy() const { return fEnergy; }
36 Double_t Et() const;
37 Double_t Eta() const { return fPoint.Eta(); }
38 Double_t EtaWidth() const { return fEtaWidth; }
39 Double_t HcalDepth1Energy() const { return fHcalDepth1Energy; }
40 Double_t HcalDepth2Energy() const { return fHcalDepth2Energy; }
41 Double_t HadDepth1OverEm() const { return fHcalDepth1Energy/fEnergy; }
42 Double_t HadDepth2OverEm() const { return fHcalDepth2Energy/fEnergy; }
43 Double_t HadOverEm() const { return (fHcalDepth1Energy+
44 fHcalDepth2Energy)/fEnergy; }
45 Bool_t IsSortable() const { return kTRUE; }
46 EObjType ObjType() const { return kSuperCluster; }
47 UInt_t NTowers() const { return fCaloTowers.Entries(); }
48 Double_t Phi() const { return fPoint.Phi(); }
49 Double_t PhiWidth() const { return fPhiWidth; }
50 ThreeVectorC Point() const { return fPoint.V(); }
51 void Print(Option_t *opt="") const;
52 Double_t PreshowerEnergy() const { return fPreshowerEnergy; }
53 Double_t RawEnergy() const { return fRawEnergy; }
54 Double_t Rho() const { return fPoint.Rho(); }
55 const BasicCluster *Seed() const { return fSeedRef.Obj(); }
56 const CaloTower *Tower(UInt_t i) const { return fCaloTowers.At(i); }
57 void SetEnergy(Double_t energy) { fEnergy = energy; }
58 void SetEtaWidth(Double_t etaWidth) { fEtaWidth = etaWidth; }
59 void SetPhiWidth(Double_t phiWidth) { fPhiWidth = phiWidth; }
60 void SetPreshowerEnergy(Double_t e) { fPreshowerEnergy = e; }
61 void SetRawEnergy(Double_t rawEnergy) { fRawEnergy = rawEnergy; }
62 void SetHcalDepth1Energy(Double_t x) { fHcalDepth1Energy = x; }
63 void SetHcalDepth2Energy(Double_t x) { fHcalDepth2Energy = x; }
64 void SetSeed(const BasicCluster *s) { fSeedRef = s; }
65 void SetXYZ(Double_t x, Double_t y, Double_t z) { fPoint.SetXYZ(x,y,z); }
66
67 protected:
68 Vect3C fPoint; //centroid Position
69 Double32_t fEnergy; //[0,0,14]super cluster energy
70 Double32_t fEtaWidth; //[0,0,14]width in Phi
71 Double32_t fPreshowerEnergy; //[0,0,14]energy in the preshower
72 Double32_t fPhiWidth; //[0,0,14]width in Phi
73 Double32_t fRawEnergy; //[0,0,14]super cluster raw energy
74 Double32_t fHcalDepth1Energy; //[0,0,14] hcal depth1 over ECAL energy
75 Double32_t fHcalDepth2Energy; //[0,0,14] hcal depth2 over ECAL energy
76 RefArray<BasicCluster> fClusters; //assigned basic clusters
77 Ref<BasicCluster> fSeedRef; //seed cluster
78 RefArray<CaloTower> fCaloTowers; //calo towers (matched by detid)
79
80 ClassDef(SuperCluster, 3) // Super cluster class
81 };
82 }
83
84 //--------------------------------------------------------------------------------------------------
85 inline Double_t mithep::SuperCluster::Et() const
86 {
87 // Return transverse energy.
88
89 return fEnergy*fPoint.Rho()/fPoint.V().R();
90 }
91
92 //--------------------------------------------------------------------------------------------------
93 inline Int_t mithep::SuperCluster::Compare(const TObject *o) const
94 {
95 // Default compare function for sorting according to transverse momentum.
96 // Returns -1 if this object is smaller than given object, 0 if objects are
97 // equal and 1 if this is larger than given object.
98
99 const mithep::SuperCluster *s = dynamic_cast<const mithep::SuperCluster *>(o);
100 if (!s)
101 return 1;
102
103 Double_t mye = Energy();
104 Double_t e = s->Energy();
105 if (mye>e)
106 return -1;
107 else if (e>mye)
108 return +1;
109 return 0;
110 }
111 #endif