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c7bafca9 1/**************************************************************************
2 * Copyright(c) 1998-1999, ALICE Experiment at CERN, All rights reserved. *
3 * *
4 * Author: The ALICE Off-line Project. *
5 * Contributors are mentioned in the code where appropriate. *
6 * *
7 * Permission to use, copy, modify and distribute this software and its *
8 * documentation strictly for non-commercial purposes is hereby granted *
9 * without fee, provided that the above copyright notice appears in all *
10 * copies and that both the copyright notice and this permission notice *
11 * appear in the supporting documentation. The authors make no claims *
12 * about the suitability of this software for any purpose. It is *
13 * provided "as is" without express or implied warranty. *
14 **************************************************************************/
15
16//-------------------------------------------------------------------------
17// Implementation of the cascade vertexer class
18// Reads V0s and tracks, writes out cascade vertices
19// Fills the ESD with the cascades
20// Origin: Christian Kuhn, IReS, Strasbourg, christian.kuhn@ires.in2p3.fr
21//-------------------------------------------------------------------------
c028b974 22
23//modified by R. Vernet 30/6/2006 : daughter label
24//modified by R. Vernet 3/7/2006 : causality
5e4ff34d 25//modified by I. Belikov 24/11/2006 : static setter for the default cuts
c028b974 26
27
c7bafca9 28#include <TObjArray.h>
29#include <TTree.h>
30
af885e0f 31#include "AliESDEvent.h"
c7bafca9 32#include "AliESDv0.h"
33#include "AliESDcascade.h"
34#include "AliCascadeVertexer.h"
faffd83e 35#include "AliESDtrack.h"
36#include "AliESDVertex.h"
c7bafca9 37
38ClassImp(AliCascadeVertexer)
39
5e4ff34d 40//A set of loose cuts
41Double_t
e82eee7e 42 AliCascadeVertexer::fgChi2max=33.; //maximal allowed chi2
5e4ff34d 43Double_t
e82eee7e 44 AliCascadeVertexer::fgDV0min=0.05; //min V0 impact parameter
5e4ff34d 45Double_t
e82eee7e 46 AliCascadeVertexer::fgMassWin=0.01; //"window" around the Lambda mass
5e4ff34d 47Double_t
e82eee7e 48 AliCascadeVertexer::fgDBachMin=0.035; //min bachelor impact parameter
5e4ff34d 49Double_t
e82eee7e 50 AliCascadeVertexer::fgDCAmax=0.10; //max DCA between the V0 and the track
5e4ff34d 51Double_t
85f0f56e 52 AliCascadeVertexer::fgCPAmin=0.9985; //min cosine of the cascade pointing angle
5e4ff34d 53Double_t
e82eee7e 54 AliCascadeVertexer::fgRmin=0.2; //min radius of the fiducial volume
5e4ff34d 55Double_t
e82eee7e 56 AliCascadeVertexer::fgRmax=100.; //max radius of the fiducial volume
5e4ff34d 57
58
af885e0f 59Int_t AliCascadeVertexer::V0sTracks2CascadeVertices(AliESDEvent *event) {
c7bafca9 60 //--------------------------------------------------------------------
61 // This function reconstructs cascade vertices
62 // Adapted to the ESD by I.Belikov (Jouri.Belikov@cern.ch)
63 //--------------------------------------------------------------------
5e4ff34d 64 const AliESDVertex *vtx=event->GetVertex();
65 Double_t xv=vtx->GetXv(), yv=vtx->GetYv(), zv=vtx->GetZv();
66
c7bafca9 67 Double_t b=event->GetMagneticField();
68 Int_t nV0=(Int_t)event->GetNumberOfV0s();
c028b974 69
70 //stores relevant V0s in an array
c7bafca9 71 TObjArray vtcs(nV0);
72 Int_t i;
73 for (i=0; i<nV0; i++) {
74 AliESDv0 *v=event->GetV0(i);
d6a49f20 75 if (v->GetOnFlyStatus()) continue;
5e4ff34d 76 if (v->GetD(xv,yv,zv)<fDV0min) continue;
c7bafca9 77 vtcs.AddLast(v);
78 }
79 nV0=vtcs.GetEntriesFast();
80
c028b974 81 // stores relevant tracks in another array
c7bafca9 82 Int_t nentr=(Int_t)event->GetNumberOfTracks();
83 TArrayI trk(nentr); Int_t ntr=0;
84 for (i=0; i<nentr; i++) {
85 AliESDtrack *esdtr=event->GetTrack(i);
85f0f56e 86 ULong_t status=esdtr->GetStatus();
c7bafca9 87
88 if ((status&AliESDtrack::kITSrefit)==0)
85f0f56e 89 if ((status&AliESDtrack::kTPCrefit)==0) continue;
c7bafca9 90
5e4ff34d 91 if (TMath::Abs(esdtr->GetD(xv,yv,b))<fDBachMin) continue;
c7bafca9 92
93 trk[ntr++]=i;
94 }
95
96 Double_t massLambda=1.11568;
97 Int_t ncasc=0;
98
99 // Looking for the cascades...
c028b974 100
101 for (i=0; i<nV0; i++) { //loop on V0s
102
c7bafca9 103 AliESDv0 *v=(AliESDv0*)vtcs.UncheckedAt(i);
104 v->ChangeMassHypothesis(kLambda0); // the v0 must be Lambda
105 if (TMath::Abs(v->GetEffMass()-massLambda)>fMassWin) continue;
c028b974 106
107 for (Int_t j=0; j<ntr; j++) {//loop on tracks
c7bafca9 108 Int_t bidx=trk[j];
b75d63a7 109 //Bo: if (bidx==v->GetNindex()) continue; //bachelor and v0's negative tracks must be different
110 if (bidx==v->GetIndex(0)) continue; //Bo: consistency 0 for neg
c7bafca9 111 AliESDtrack *btrk=event->GetTrack(bidx);
c7bafca9 112 if (btrk->GetSign()>0) continue; // bachelor's charge
113
c028b974 114 AliESDv0 v0(*v), *pv0=&v0;
c7bafca9 115 AliExternalTrackParam bt(*btrk), *pbt=&bt;
116
117 Double_t dca=PropagateToDCA(pv0,pbt,b);
118 if (dca > fDCAmax) continue;
119
c028b974 120 AliESDcascade cascade(*pv0,*pbt,bidx);//constucts a cascade candidate
121 if (cascade.GetChi2Xi() > fChi2max) continue;
c7bafca9 122
85f0f56e 123 Double_t x,y,z; cascade.GetXYZcascade(x,y,z); // Bo: bug correction
c7bafca9 124 Double_t r2=x*x + y*y;
125 if (r2 > fRmax*fRmax) continue; // condition on fiducial zone
126 if (r2 < fRmin*fRmin) continue;
127
c028b974 128 Double_t pxV0,pyV0,pzV0;
129 pv0->GetPxPyPz(pxV0,pyV0,pzV0);
130 if (x*pxV0+y*pyV0+z*pzV0 < 0) continue; //causality
131
c7bafca9 132 Double_t x1,y1,z1; pv0->GetXYZ(x1,y1,z1);
133 if (r2 > (x1*x1+y1*y1)) continue;
c7bafca9 134
85f0f56e 135 if (cascade.GetCascadeCosineOfPointingAngle(xv,yv,zv) <fCPAmin) continue; //condition on the cascade pointing angle
c028b974 136
137 event->AddCascade(&cascade);
c7bafca9 138 ncasc++;
c028b974 139 } // end loop tracks
140 } // end loop V0s
c7bafca9 141
142 // Looking for the anti-cascades...
c028b974 143
144 for (i=0; i<nV0; i++) { //loop on V0s
c7bafca9 145 AliESDv0 *v=(AliESDv0*)vtcs.UncheckedAt(i);
146 v->ChangeMassHypothesis(kLambda0Bar); //the v0 must be anti-Lambda
147 if (TMath::Abs(v->GetEffMass()-massLambda)>fMassWin) continue;
c028b974 148
149 for (Int_t j=0; j<ntr; j++) {//loop on tracks
c7bafca9 150 Int_t bidx=trk[j];
b75d63a7 151 //Bo: if (bidx==v->GetPindex()) continue; //bachelor and v0's positive tracks must be different
152 if (bidx==v->GetIndex(1)) continue; //Bo: consistency 1 for pos
c7bafca9 153 AliESDtrack *btrk=event->GetTrack(bidx);
c7bafca9 154 if (btrk->GetSign()<0) continue; // bachelor's charge
155
156 AliESDv0 v0(*v), *pv0=&v0;
157 AliESDtrack bt(*btrk), *pbt=&bt;
158
159 Double_t dca=PropagateToDCA(pv0,pbt,b);
160 if (dca > fDCAmax) continue;
161
c028b974 162 AliESDcascade cascade(*pv0,*pbt,bidx); //constucts a cascade candidate
163 if (cascade.GetChi2Xi() > fChi2max) continue;
c7bafca9 164
85f0f56e 165 Double_t x,y,z; cascade.GetXYZcascade(x,y,z); // Bo: bug correction
c7bafca9 166 Double_t r2=x*x + y*y;
167 if (r2 > fRmax*fRmax) continue; // condition on fiducial zone
168 if (r2 < fRmin*fRmin) continue;
169
c028b974 170 Double_t pxV0,pyV0,pzV0;
171 pv0->GetPxPyPz(pxV0,pyV0,pzV0);
172 if (x*pxV0+y*pyV0+z*pzV0 < 0) continue; //causality
173
c7bafca9 174 Double_t x1,y1,z1; pv0->GetXYZ(x1,y1,z1);
175 if (r2 > (x1*x1+y1*y1)) continue;
176 if (z*z > z1*z1) continue;
c7bafca9 177
85f0f56e 178 if (cascade.GetCascadeCosineOfPointingAngle(xv,yv,zv) < fCPAmin) continue; //condition on the cascade pointing angle
c028b974 179 event->AddCascade(&cascade);
c7bafca9 180 ncasc++;
181
c028b974 182 } // end loop tracks
183 } // end loop V0s
c7bafca9 184
185Info("V0sTracks2CascadeVertices","Number of reconstructed cascades: %d",ncasc);
186
187 return 0;
188}
189
190
df53c9d5 191Double_t det(Double_t a00, Double_t a01, Double_t a10, Double_t a11){
c7bafca9 192 // determinant 2x2
193 return a00*a11 - a01*a10;
194}
195
df53c9d5 196Double_t det (Double_t a00,Double_t a01,Double_t a02,
c7bafca9 197 Double_t a10,Double_t a11,Double_t a12,
198 Double_t a20,Double_t a21,Double_t a22) {
199 // determinant 3x3
200 return
201 a00*det(a11,a12,a21,a22)-a01*det(a10,a12,a20,a22)+a02*det(a10,a11,a20,a21);
202}
203
204
205
206
207Double_t AliCascadeVertexer::
208PropagateToDCA(AliESDv0 *v, AliExternalTrackParam *t, Double_t b) {
209 //--------------------------------------------------------------------
210 // This function returns the DCA between the V0 and the track
211 //--------------------------------------------------------------------
212 Double_t alpha=t->GetAlpha(), cs1=TMath::Cos(alpha), sn1=TMath::Sin(alpha);
213 Double_t r[3]; t->GetXYZ(r);
214 Double_t x1=r[0], y1=r[1], z1=r[2];
215 Double_t p[3]; t->GetPxPyPz(p);
216 Double_t px1=p[0], py1=p[1], pz1=p[2];
217
218 Double_t x2,y2,z2; // position and momentum of V0
219 Double_t px2,py2,pz2;
220
221 v->GetXYZ(x2,y2,z2);
222 v->GetPxPyPz(px2,py2,pz2);
223
224// calculation dca
225
226 Double_t dd= det(x2-x1,y2-y1,z2-z1,px1,py1,pz1,px2,py2,pz2);
227 Double_t ax= det(py1,pz1,py2,pz2);
228 Double_t ay=-det(px1,pz1,px2,pz2);
229 Double_t az= det(px1,py1,px2,py2);
230
231 Double_t dca=TMath::Abs(dd)/TMath::Sqrt(ax*ax + ay*ay + az*az);
232
233//points of the DCA
234 Double_t t1 = det(x2-x1,y2-y1,z2-z1,px2,py2,pz2,ax,ay,az)/
235 det(px1,py1,pz1,px2,py2,pz2,ax,ay,az);
236
237 x1 += px1*t1; y1 += py1*t1; //z1 += pz1*t1;
238
239
240 //propagate track to the points of DCA
241
242 x1=x1*cs1 + y1*sn1;
243 if (!t->PropagateTo(x1,b)) {
244 Error("PropagateToDCA","Propagation failed !");
245 return 1.e+33;
246 }
247
248 return dca;
249}
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