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root/cvsroot/UserCode/MitAna/DataTree/interface/DecayParticle.h
Revision: 1.30
Committed: Mon Nov 22 16:51:26 2010 UTC (14 years, 5 months ago) by bendavid
Content type: text/plain
Branch: MAIN
CVS Tags: Mit_018, Mit_017, Mit_017pre3, Mit_017pre2, Mit_017pre1
Changes since 1.29: +12 -5 lines
Log Message:
accommodate conversion changes in 39

File Contents

# User Rev Content
1 loizides 1.1 //--------------------------------------------------------------------------------------------------
2 bendavid 1.30 // $Id: DecayParticle.h,v 1.29 2010/03/31 12:04:06 bendavid Exp $
3 loizides 1.1 //
4 loizides 1.20 // DecayParticle
5 loizides 1.1 //
6 loizides 1.20 // The decay particle class is for use in vertexing based analyses. It
7     // stores vertex fit information (including four momentum) and links to daughters.
8 loizides 1.1 //
9 loizides 1.20 // Note that Charge() is still computed as a recursive loop over daughters, as inherited from
10     // CompositeParticle, but momentum is returned from the internally stored four vector.
11 bendavid 1.10 //
12 loizides 1.14 // Authors: C.Paus, J.Bendavid
13 loizides 1.1 //--------------------------------------------------------------------------------------------------
14    
15 loizides 1.21 #ifndef MITANA_DATATREE_DECAYPARTICLE_H
16     #define MITANA_DATATREE_DECAYPARTICLE_H
17 loizides 1.1
18 loizides 1.26 #include <TDatabasePDG.h>
19     #include <TParticlePDG.h>
20     #include "MitCommon/DataFormats/interface/Vect4M.h"
21 bendavid 1.11 #include "MitAna/DataTree/interface/DaughterData.h"
22 bendavid 1.13 #include "MitAna/DataTree/interface/Vertex.h"
23 bendavid 1.30 #include "MitAna/DataTree/interface/ConversionQuality.h"
24 bendavid 1.13 #include "MitAna/DataCont/interface/RefArray.h"
25 loizides 1.20
26 loizides 1.1 namespace mithep
27     {
28 bendavid 1.13 class DecayParticle : public Particle
29 loizides 1.1 {
30     public:
31 loizides 1.23 DecayParticle() :
32     fAbsPdgId(0), fChi2(0), fNdof(0), fMassError(0),
33 bendavid 1.30 fLxy(0), fLxyError(0), fDxy(0), fDxyError(0), fLz(0), fLzError(0), fNSharedHits(0) {}
34 loizides 1.20 DecayParticle(Int_t absPdgId) :
35 loizides 1.23 fAbsPdgId(absPdgId), fChi2(0), fNdof(0), fMassError(0),
36 bendavid 1.30 fLxy(0), fLxyError(0), fDxy(0), fDxyError(0), fLz(0), fLzError(0), fNSharedHits(0) {}
37 bendavid 1.7
38 loizides 1.26 void AddDaughterData(const DaughterData *dd)
39     { fDaughterData.Add(dd); ClearCharge(); }
40 loizides 1.25 UInt_t AbsPdgId() const { return fAbsPdgId; }
41     Double_t Chi2() const { return fChi2; }
42     const Particle *Daughter(UInt_t i) const { return DaughterDat(i)->Original(); }
43     const DaughterData *DaughterDat(UInt_t i) const { return fDaughterData.At(i); }
44     Double_t Dxy() const { return fDxy; }
45 bendavid 1.29 Double_t DxyCorrected(const ThreeVector &v) const;
46     Double_t DxyCorrected(const BaseVertex *v) const;
47 loizides 1.25 Double_t DxyError() const { return fDxyError; }
48 bendavid 1.29 Double_t DzCorrected(const ThreeVector &v) const;
49     Double_t DzCorrected(const BaseVertex *v) const;
50 loizides 1.20 Bool_t HasDaughter(const Particle *p) const;
51     Bool_t HasCommonDaughter(const DecayParticle *p) const;
52 loizides 1.25 Bool_t HasPriVertex() const { return fPriVtx.IsValid(); }
53 loizides 1.23 Bool_t HasPriVertex(const Vertex *v)
54 loizides 1.25 const { return fPriVtx.RefsObject(v); }
55 loizides 1.26 Bool_t HasSameDaughters(const DecayParticle *p) const;
56 loizides 1.25 Double_t Lxy() const { return fLxy; }
57     Double_t LxyError() const { return fLxyError; }
58     Double_t Lz() const { return fLz; }
59     Double_t LzError() const { return fLzError; }
60 loizides 1.26 Double_t MassError() const { return fMassError; }
61     UShort_t Ndof() const { return fNdof; }
62 loizides 1.25 UInt_t NDaughters() const { return fDaughterData.Entries(); }
63     EObjType ObjType() const { return kDecayParticle; }
64 loizides 1.20 TParticlePDG *ParticlePdgEntry() const;
65     Double_t PdgMass() const;
66 loizides 1.26 const Vertex *PriVertex() const { return fPriVtx.Obj(); }
67 loizides 1.25 Double_t Prob() const { return TMath::Prob(fChi2,fNdof); }
68 bendavid 1.24 const ThreeVector &Position() const;
69 bendavid 1.30 const ConversionQuality &Quality() const { return fQuality; }
70     ConversionQuality &Quality() { return fQuality; }
71 loizides 1.20 const ThreeVector RelativePosition() const;
72 bendavid 1.28 Bool_t SharedLayer(Track::EHitLayer l) const { return fSharedLayers.TestBit(l); }
73     const BitMask48 &SharedLayers() const { return fSharedLayers; }
74 bendavid 1.30 UInt_t NSharedLayers() const { return fSharedLayers.NBitsSet(); }
75     UInt_t NSharedHits() const { return TMath::Max(UInt_t(fNSharedHits),NSharedLayers()); }
76 loizides 1.25 void SetAbsPdgId(UInt_t apid) { fAbsPdgId=apid; }
77     void SetChi2(Double_t chi2) { fChi2 = chi2; }
78     void SetDxy(Double_t dxy) { fDxy = dxy; ClearPos(); }
79     void SetDxyError(Double_t dxyError) { fDxyError = dxyError; }
80     void SetLxy(Double_t lxy) { fLxy = lxy; ClearPos(); }
81     void SetLxyError(Double_t lxyError) { fLxyError = lxyError; }
82     void SetLz(Double_t lz) { fLz = lz; ClearPos(); }
83     void SetLzError(Double_t lzError) { fLzError = lzError; }
84 loizides 1.26 void SetMassError(Double_t massError) { fMassError = massError; }
85     void SetMom(Double_t px, Double_t py, Double_t pz, Double_t e);
86     void SetMom(const FourVector &p)
87     { fMomentum = p; ClearMom(); ClearPos(); }
88     void SetNdof(UShort_t ndof) { fNdof = ndof; }
89 bendavid 1.30 void SetNSharedHits(UShort_t nhits) { fNSharedHits = nhits; }
90 bendavid 1.24 void SetPriVertex(const Vertex *v) { fPriVtx = v; ClearPos(); }
91 bendavid 1.28 void SetSharedLayer(Track::EHitLayer l) { fSharedLayers.SetBit(l); }
92     void SetSharedLayers(const BitMask48 &layers) { fSharedLayers = layers; }
93 loizides 1.12 using TObject::Error;
94 loizides 1.20
95 loizides 1.1 protected:
96 bendavid 1.24 void ClearPos() const { fCachePosFlag.ClearCache(); }
97 loizides 1.23 Double_t GetCharge() const;
98     void GetMom() const;
99 bendavid 1.24 void GetPos() const;
100 loizides 1.23
101 loizides 1.20 UInt_t fAbsPdgId; //absolute value of pid code
102 loizides 1.26 Double32_t fChi2; //[0,0,12]chi-squared of fit
103     UShort_t fNdof; //degrees of freedom for fit
104     Double32_t fMassError; //[0,0,14]fitted mass error
105     Double32_t fLxy; //[0,0,14]fitted lxy (decay length)
106     Double32_t fLxyError; //[0,0,14]fitted lxy error
107     Double32_t fDxy; //[0,0,14]fitted impact parameter
108     Double32_t fDxyError; //[0,0,14]fitted impact parameter error
109     Double32_t fLz; //[0,0,14]fitted lz (decay length)
110     Double32_t fLzError; //[0,0,14]fitted lz error
111     Vect4M fMomentum; //momentum fourvector
112 bendavid 1.24 RefArray<DaughterData> fDaughterData; //momentum of daughters at vertex
113 loizides 1.25 Ref<Vertex> fPriVtx; //reference to primary vertex
114 bendavid 1.28 BitMask48 fSharedLayers; //layer mask for shared hits from daughter particles
115 bendavid 1.30 UShort_t fNSharedHits; //number of shared hits
116     ConversionQuality fQuality; //conversion quality flags
117 bendavid 1.24 mutable CacheFlag fCachePosFlag; //||cache validity flag for position
118     mutable ThreeVector fCachedPos; //!cached momentum vector (filled by derived classes)
119    
120 bendavid 1.30 ClassDef(DecayParticle, 3) // Decay particle class
121 loizides 1.1 };
122     }
123 bendavid 1.7
124     //--------------------------------------------------------------------------------------------------
125 loizides 1.23 inline Double_t mithep::DecayParticle::GetCharge() const
126     {
127     // Return sum of charge of daughter particles.
128    
129     Double_t charge = 0;
130     for (UInt_t i=0; i<NDaughters(); ++i)
131     charge += DaughterDat(i)->Charge();
132    
133     return charge;
134     }
135    
136     //--------------------------------------------------------------------------------------------------
137     inline void mithep::DecayParticle::GetMom() const
138     {
139     // Get momentum values from stored values.
140    
141 loizides 1.26 fCachedMom.SetCoordinates(fMomentum.Pt(), fMomentum.Eta(), fMomentum.Phi(), fMomentum.M());
142 loizides 1.23 }
143    
144     //--------------------------------------------------------------------------------------------------
145 bendavid 1.7 inline TParticlePDG *mithep::DecayParticle::ParticlePdgEntry() const
146     {
147 loizides 1.20 // Return entry to pdg database for the particle.
148 bendavid 1.7
149     return TDatabasePDG::Instance()->GetParticle(fAbsPdgId);
150     }
151 bendavid 1.8
152     //--------------------------------------------------------------------------------------------------
153     inline void mithep::DecayParticle::SetMom(Double_t px, Double_t py, Double_t pz, Double_t e)
154     {
155 loizides 1.20 // Set four vector.
156 bendavid 1.8
157 bendavid 1.11 fMomentum.SetXYZT(px,py,pz,e);
158 bendavid 1.24 ClearMom();
159     ClearPos();
160     }
161    
162     //--------------------------------------------------------------------------------------------------
163     inline const mithep::ThreeVector &mithep::DecayParticle::Position() const
164     {
165     // Return cached momentum value.
166    
167     if (!fCachePosFlag.IsValid()) {
168     GetPos();
169     fCachePosFlag.SetValid();
170     }
171    
172     return fCachedPos;
173 bendavid 1.11 }
174    
175     //--------------------------------------------------------------------------------------------------
176 bendavid 1.24 inline void mithep::DecayParticle::GetPos() const
177 bendavid 1.13 {
178 loizides 1.20 // Return absolute position of decay.
179 bendavid 1.13
180     const mithep::Vertex *pv = PriVertex();
181    
182     if (pv)
183 bendavid 1.24 fCachedPos = pv->Position() + RelativePosition();
184 bendavid 1.13 else
185 bendavid 1.24 fCachedPos = RelativePosition();
186 bendavid 1.13 }
187    
188     //--------------------------------------------------------------------------------------------------
189     inline const mithep::ThreeVector mithep::DecayParticle::RelativePosition() const
190     {
191 loizides 1.20 // Compute the position vector of the decay vertex relative to the primary vertex.
192 bendavid 1.13
193 loizides 1.26 mithep::ThreeVector dz(0,0,fLz*TMath::Abs(Pz())/Pz());
194     mithep::ThreeVector momPerp(Px(),Py(),0);
195 bendavid 1.13 mithep::ThreeVector zHat(0,0,1.0);
196 paus 1.17 mithep::ThreeVector dxy = -momPerp.Cross(zHat)*fDxy/momPerp.R();
197     mithep::ThreeVector dlxy = momPerp*fLxy/momPerp.R();
198 bendavid 1.13 return (dxy+dlxy+dz);
199     }
200 bendavid 1.29
201     //--------------------------------------------------------------------------------------------------
202     inline Double_t mithep::DecayParticle::DxyCorrected(const mithep::ThreeVector &v) const
203     {
204     // Compute Dxy with respect to a given position
205     mithep::ThreeVector momPerp(Px(),Py(),0);
206     return momPerp.Cross(Position() - v).Z()/Pt();
207    
208     }
209    
210     //--------------------------------------------------------------------------------------------------
211     inline Double_t mithep::DecayParticle::DxyCorrected(const mithep::BaseVertex *v) const
212     {
213     // Compute Dxy with respect to a given beamspot/vertex
214     return DxyCorrected(v->Position());
215    
216     }
217    
218     //--------------------------------------------------------------------------------------------------
219     inline Double_t mithep::DecayParticle::DzCorrected(const mithep::ThreeVector &v) const
220     {
221     // Compute Dxy with respect to a given position
222     mithep::ThreeVector momPerp(Px(),Py(),0);
223     mithep::ThreeVector posPerp(Position().X()-v.X(),Position().Y()-v.Y(),0);
224     return Position().Z() - v.Z() - posPerp.Dot(momPerp)/Pt() * (Pz()/Pt());
225    
226     }
227    
228     //--------------------------------------------------------------------------------------------------
229     inline Double_t mithep::DecayParticle::DzCorrected(const mithep::BaseVertex *v) const
230     {
231     // Compute Dxy with respect to a given beamspot/vertex
232     return DzCorrected(v->Position());
233    
234     }
235    
236 loizides 1.1 #endif