AliGausCorr.h exported, typos corrected
[u/mrichter/AliRoot.git] / TPC / AliTPCtrackerParam.cxx
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6eb67451 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$Log$
ad1cec28 17Revision 1.1 2002/02/18 09:06:54 kowal2
18TPC parametrization by Andrea Dainese
19
6eb67451 20*/
21/*************************************************************************
22 * *
23 * This class builds AliTPCtrack objects from generated tracks to feed *
24 * ITS tracking (V2). The AliTPCtrack is built from its first hit in *
25 * the TPC. The track is assigned a Kalman-like covariance matrix *
26 * depending on its pT and pseudorapidity and track parameters are *
27 * smeared according this covariance matrix. *
28 * Output file contains sorted tracks, ready for matching with ITS *
29 * *
30 * Test macro is: AliBarrelRec_TPCparam.C *
31 * *
32 * Origin: Andrea Dainese, Padova - e-mail: andrea.dainese@pd.infn.it *
33 * *
34 **************************************************************************/
35#include "AliTPCtrackerParam.h"
36#include "alles.h"
37#include "AliMagF.h"
38#include "AliTPCtrack.h"
39#include "TMatrixD.h"
40#include "AliKalmanTrack.h"
41
42ClassImp(AliTPCtrackerParam)
43
44//-----------------------------------------------------------------
45AliTPCtrackerParam::AliTPCtrackerParam(const Int_t coll,const Double_t Bz)
46{
47 fColl = coll; // collision code (0: PbPb6000)
48 fBz = Bz; // value of the z component of L3 field (Tesla)
49
50}
51//-----------------------------------------------------------------
52AliTPCtrackerParam::~AliTPCtrackerParam()
53{}
54//-----------------------------------------------------------------
55
56Int_t AliTPCtrackerParam::BuildTPCtracks(const TFile *inp, TFile *out, Int_t n)
57{
58
59 if(fColl!=0) {
ad1cec28 60 cerr<<"AliTPCtrackerParam::BuildTPCtracks: Invalid collision!"<<endl<<
61 "Available: 0 -> PbPb6000"<<endl; return 0;
6eb67451 62 }
63 if(fBz!=0.4) {
ad1cec28 64 cerr<<"AliTPCtrackerParam::BuildTPCtracks: Invalid field!"<<endl<<
65 "Available: 0.4"<<endl; return 0;
6eb67451 66 }
67
68 TFile *infile=(TFile*)inp;
69
70 AliKalmanTrack::SetConvConst(100/0.299792458/fBz);
71
72 // Get gAlice object from file
73 if(!(gAlice=(AliRun*)infile->Get("gAlice"))) {
74 cerr<<"gAlice has not been found on galice.root !\n";
75 return 1;
76 }
77
78 // Set random number generator seed
79 TDatime t;
80 gRandom->SetSeed(t.Get());
81
82
83 // loop over first n events in file
84 for(Int_t evt=0; evt<n; evt++){
85 cerr<<"+++\n+++ Processing event "<<evt<<"\n+++\n";
86
87 AliTPCtrack *tpctrack=0;
88
89 // tree for TPC tracks
90 Char_t tname[100];
91 sprintf(tname,"TreeT_TPC_%d",evt);
92 TTree *tracktree = new TTree(tname,"Tree with TPC tracks");
93 tracktree->Branch("tracks","AliTPCtrack",&tpctrack,20000,0);
94
95 // array for TPC tracks
96 TObjArray tarray(20000);
97
98
99 Int_t nparticles=gAlice->GetEvent(evt);
100
101 Bool_t done[500000];
102 for(Int_t l=0; l<500000; l++) { done[l]=kFALSE; }
103
104
105 // Get TPC detector
106 AliTPC *TPC=(AliTPC*)gAlice->GetDetector("TPC");
107 Int_t ver = TPC->IsVersion();
108 cerr<<"+++ TPC version "<<ver<<" has been found !\n";
109 AliTPCParam *digp=(AliTPCParam*)infile->Get("75x40_100x60");
110 if(!digp) { cerr<<"TPC parameters have not been found !\n"; return 1; }
111 TPC->SetParam(digp);
112
113 // Get TreeH with hits
114 TTree *TH=gAlice->TreeH();
115 Int_t ntracks=(Int_t)TH->GetEntries();
116 cerr<<"+++\n+++ Number of particles in event "<<evt<<": "<<nparticles<<"\n+++\n+++ Number of \"primary tracks\" (entries in TreeH): "<<ntracks<<"\n+++\n\n";
117
118 TParticle* Part;
119 AliTPChit* tpcHit;
120 Double_t hPx,hPy,hPz,hPt,xg,yg,zg,xl,yl,zl;
121 Double_t Alpha;
122 Float_t cosAlpha,sinAlpha;
123 Int_t label,Pdg,charge,bin;
124 Int_t tracks=0;
125 //Int_t N1=0,N2=0;
126
127 // loop over entries in TreeH
128 for(Int_t i=0; i<ntracks; i++) {
129 if(i%1000==0) cerr<<" --- Processing primary track "<<i<<" of "<<ntracks<<" ---\r";
130 TPC->ResetHits();
131 TH->GetEvent(i);
132 // Get FirstHit
133 tpcHit=(AliTPChit*)TPC->FirstHit(-1);
134 for( ; tpcHit; tpcHit=(AliTPChit*)TPC->NextHit() ) {
135 if(tpcHit->fQ !=0.) continue;
136 // Get particle momentum at hit
137 hPx=tpcHit->X(); hPy=tpcHit->Y(); hPz=tpcHit->Z();
138 hPt=TMath::Sqrt(hPx*hPx+hPy*hPy);
139 // reject hits with Pt<mag*0.45 GeV/c
140 if(hPt<(fBz*0.45)) continue;
141
142 // Get track label
143 label=tpcHit->Track();
144 // check if this track has already been processed
145 if(done[label]) continue;
146 // electric charge
147 Part = gAlice->Particle(label);
148 Pdg = Part->GetPdgCode();
149 if(Pdg>200 || Pdg==-11 || Pdg==-13) { charge=1; }
150 else if(Pdg<-200 || Pdg==11 || Pdg==13) { charge=-1; }
151 else continue;
152
153
154 if((tpcHit=(AliTPChit*)TPC->NextHit())==0) break;
155 if(tpcHit->fQ != 0.) continue;
156 // Get global coordinates of hit
157 xg=tpcHit->X(); yg=tpcHit->Y(); zg=tpcHit->Z();
158 if(TMath::Sqrt(xg*xg+yg*yg)>90.) continue;
159
160 // Get TPC sector, Alpha angle and local coordinates
161 // printf("Sector %d\n",tpcHit->fSector);
162 digp->AdjustCosSin(tpcHit->fSector,cosAlpha,sinAlpha);
163 Alpha = TMath::ATan2(sinAlpha,cosAlpha);
164 xl = xg*cosAlpha + yg*sinAlpha;
165 yl =-xg*sinAlpha + yg*cosAlpha;
166 zl = zg;
167 //printf("Alpha %f xl %f yl %f zl %f\n",Alpha,xl,yl,zl);
168
169 // reject tracks which are not in the TPC acceptance
170 if(TMath::Abs(zl+(244.-xl)*hPz/hPt)>252.) continue;
171
172 // Get bin in pT,eta
173 bin = GetBin(hPt,Part->Eta());
174
175 // Apply selection according to TPC efficiency
176 //if(abs(Pdg)==211) N1++;
177 if(!SelectedTrack(Pdg,hPt,Part->Eta())) continue;
178 //if(abs(Pdg)==211) N2++;
179
180 // Mark track as "done"
181 done[label]=kTRUE; tracks++;
182
183 // create AliTPCtrack object
184 tpctrack = BuildTrack(Alpha,xl,yl,zl,hPx,hPy,hPz,hPt,charge,label);
185
186 // put track in array
187 tarray.AddLast(tpctrack);
188
189 }
190
191 } // loop over entries in TreeH
192
193 TObjArray newtarray(20000);
194
195 // assing covariance matrixes and smear track parameters
196 CookTracks(tarray,newtarray);
197
198 // sort array with TPC tracks (decreasing pT)
199 newtarray.Sort();
200
201
202 Int_t arrentr = newtarray.GetEntriesFast();
203 //printf("\n %d \n\n",arrentr);
204 for(Int_t l=0; l<arrentr; l++) {
205 tpctrack=(AliTPCtrack*)newtarray.UncheckedAt(l);
206 tracktree->Fill();
207 }
208
209 // write the tree with tracks in the output file
210 out->cd();
211 tracktree->Write();
212
213 delete tracktree;
214
215 printf("\n\n+++\n+++ Number of TPC tracks: %d\n+++\n",tracks);
216 //printf("Average Eff: %f\n",(Float_t)N2/N1);
217
218 } // loop on events
219
220 return 0;
221}
222
223//-----------------------------------------------------------------
224AliTPCtrack* AliTPCtrackerParam::BuildTrack(Double_t alpha,Double_t x,
225 Double_t y,Double_t z,Double_t Px,
226 Double_t Py,Double_t Pz,Double_t Pt,
227 Int_t ch,Int_t lab)
228{
229 Double_t xref = x;
230 Double_t xx[5],cc[15];
231 cc[0]=cc[2]=cc[5]=cc[9]=cc[14]=10.;
232 cc[1]=cc[3]=cc[4]=cc[6]=cc[7]=cc[8]=cc[10]=cc[11]=cc[12]=cc[13]=0.;
233
234 // Magnetic field
235 TVector3 Bfield(0.,0.,fBz);
236
237
238 // radius [cm] of track projection in (x,y)
239 Double_t rho = Pt*100/0.299792458/Bfield.Z();
240 // center of track projection in local reference frame
241 TVector3 MomH,PosH;
242
243
244 // position (local) and momentum (local) at the hit
245 // in the bending plane (z=0)
246 PosH.SetXYZ(x,y,0.);
247 MomH.SetXYZ(Px*TMath::Cos(alpha)+Py*TMath::Sin(alpha),-Px*TMath::Sin(alpha)+Py*TMath::Cos(alpha),0.);
248 TVector3 Vrho = MomH.Cross(Bfield);
249 Vrho *= ch;
250 Vrho.SetMag(rho);
251
252 TVector3 Vcenter = PosH+Vrho;
253
254 Double_t x0 = Vcenter.X();
255
256 // fX = xref X-coordinate of this track (reference plane)
257 // fAlpha = Alpha Rotation angle the local (TPC sector)
258 // fP0 = YL Y-coordinate of a track
259 // fP1 = ZG Z-coordinate of a track
260 // fP2 = C*x0 x0 is center x in rotated frame
261 // fP3 = Tgl tangent of the track momentum dip angle
262 // fP4 = C track curvature
263 xx[0] = y;
264 xx[1] = z;
265 xx[3] = Pz/Pt;
266 xx[4] = -ch/rho;
267 xx[2] = xx[4]*x0;
268
269 // create the object AliTPCtrack
270 AliTPCtrack* track = new AliTPCtrack(0,xx,cc,xref,alpha);
271 // set the label
272 track->SetLabel(lab);
273
274 return track;
275}
276
277//-----------------------------------------------------------------
278Bool_t AliTPCtrackerParam::SelectedTrack(Int_t pdg,Double_t pt,Double_t eta)
279{
280 Double_t eff=0.;
281
282 //eff computed with | zl+(244-xl)*pz/pt | < 252
283 Double_t effPi[27] = {0.724587,0.743389,0.619273,0.798477,0.812036,0.823195,0.771437,0.775826,0.784136,0.809071,0.762001,0.774576,0.848834,0.787201,0.792548,0.942089,0.951631,0.951085,0.960885,0.971451,0.969103,0.983245,0.978939,0.988706,0.990852,0.985679,0.993606};
284 Double_t effK[18] = {0.377934,0.363962,0.321721,0.518784,0.547459,0.517878,0.612704,0.619101,0.620894,0.733411,0.732128,0.750373,0.790630,0.806565,0.791353,0.967486,0.970483,0.974527};
285 Double_t effP[15] = {0.131173,0.165114,0.229658,0.365357,0.412989,0.483297,0.454614,0.505173,0.658615,0.694753,0.730661,0.815680,0.873461,0.887227,0.899324};
286 Double_t effEl[15] = {0.835549,0.853746,0.718207,0.835230,0.831489,0.862222,0.757783,0.747301,0.824096,0.867949,0.871891,0.808480,0.890625,0.911765,0.973684};
287 Double_t effMu[15] = {0.553486,0.641392,0.609932,0.591126,0.706729,0.750755,0.747952,0.729051,0.760849,0.898810,0.737500,0.830357,0.735294,0.800000,0.882353};
288
289
290 if(TMath::Abs(pdg)==211) eff = LinearInterpolation(9,effPi,pt,eta);
291 if(TMath::Abs(pdg)==321) eff = LinearInterpolation(6,effK,pt,eta);
292 if(TMath::Abs(pdg)==2212) eff = LinearInterpolation(5,effP,pt,eta);
293 if(TMath::Abs(pdg)==11) eff = LinearInterpolation(5,effEl,pt,eta);
294 if(TMath::Abs(pdg)==13) eff = LinearInterpolation(5,effMu,pt,eta);
295
296 if(gRandom->Rndm() < eff) return kTRUE;
297
298 return kFALSE;
299}
300
301//-----------------------------------------------------------------
302Double_t AliTPCtrackerParam::LinearInterpolation(Int_t ptBins,Double_t *value,
303 Double_t pt,Double_t eta)
304{
305 Double_t kValue=0,kValue1=0,kValue2=0;
306 Int_t kEtaSide = (TMath::Abs(eta)<.45 ? 0 : 1);
307 Double_t kEta[3]={0.15,0.45,0.75};
308 Double_t kPt[9]={0.244,0.390,0.676,1.190,2.36,4.,6.,10.,20.};
309 if(ptBins==6) kPt[5]=10.;
310
311 for(Int_t i=0; i<ptBins; i++) {
312 if(pt<kPt[i]) {
313 if(i==0) i=1;
314 kValue1 = value[3*i-3+kEtaSide]+(value[3*i-3+kEtaSide]-value[3*i+kEtaSide])/(kPt[i-1]-kPt[i])*(pt-kPt[i-1]);
315 kValue2 = value[3*i-3+kEtaSide+1]+(value[3*i-3+kEtaSide+1]-value[3*i+kEtaSide+1])/(kPt[i-1]-kPt[i])*(pt-kPt[i-1]);
316
317 kValue = kValue1+(kValue1-kValue2)/(kEta[kEtaSide]-kEta[kEtaSide+1])*(eta-kEta[kEtaSide]);
318 break;
319 }
320 if(i==ptBins-1) {
321 i=ptBins-2;
322 kValue1 = value[3*i-3+kEtaSide]+(value[3*i-3+kEtaSide]-value[3*i+kEtaSide])/(kPt[i-1]-kPt[i])*(pt-kPt[i-1]);
323 kValue2 = value[3*i-3+kEtaSide+1]+(value[3*i-3+kEtaSide+1]-value[3*i+kEtaSide+1])/(kPt[i-1]-kPt[i])*(pt-kPt[i-1]);
324
325 kValue = kValue1+(kValue1-kValue2)/(kEta[kEtaSide]-kEta[kEtaSide+1])*(eta-kEta[kEtaSide]);
326 break;
327 }
328 }
329
330 return kValue;
331}
332
333//-----------------------------------------------------------------
334Int_t AliTPCtrackerParam::GetBin(Double_t pt,Double_t eta) {
335
336 if(TMath::Abs(eta)<0.3) {
337 if(pt<0.3) return 0;
338 if(pt>=0.3 && pt<0.5) return 3;
339 if(pt>=0.5 && pt<1.) return 6;
340 if(pt>=1. && pt<1.5) return 9;
341 if(pt>=1.5 && pt<3.) return 12;
342 if(pt>=3. && pt<5.) return 15;
343 if(pt>=5. && pt<7.) return 18;
344 if(pt>=7. && pt<15.) return 21;
345 if(pt>=15.) return 24;
346 }
347 if(TMath::Abs(eta)>=0.3 && TMath::Abs(eta)<0.6) {
348 if(pt<0.3) return 1;
349 if(pt>=0.3 && pt<0.5) return 4;
350 if(pt>=0.5 && pt<1.) return 7;
351 if(pt>=1. && pt<1.5) return 10;
352 if(pt>=1.5 && pt<3.) return 13;
353 if(pt>=3. && pt<5.) return 16;
354 if(pt>=5. && pt<7.) return 19;
355 if(pt>=7. && pt<15.) return 22;
356 if(pt>=15.) return 25;
357 }
358 if(TMath::Abs(eta)>=0.6) {
359 if(pt<0.3) return 2;
360 if(pt>=0.3 && pt<0.5) return 5;
361 if(pt>=0.5 && pt<1.) return 8;
362 if(pt>=1. && pt<1.5) return 11;
363 if(pt>=1.5 && pt<3.) return 14;
364 if(pt>=3. && pt<5.) return 17;
365 if(pt>=5. && pt<7.) return 20;
366 if(pt>=7. && pt<15.) return 23;
367 if(pt>=15.) return 26;
368 }
369
370 return -1;
371
372}
373
374//-----------------------------------------------------------------
375
376TMatrixD AliTPCtrackerParam::GetSmearingMatrix(Double_t* cc,Double_t pt,Double_t eta)
377{
378 TMatrixD CovMat(5,5);
379
380 CovMat(0,0)=cc[0];
381 CovMat(1,0)=cc[1]; CovMat(0,1)=CovMat(1,0);
382 CovMat(1,1)=cc[2];
383 CovMat(2,0)=cc[3]; CovMat(0,2)=CovMat(2,0);
384 CovMat(2,1)=cc[4]; CovMat(1,2)=CovMat(2,1);
385 CovMat(2,2)=cc[5];
386 CovMat(3,0)=cc[6]; CovMat(0,3)=CovMat(3,0);
387 CovMat(3,1)=cc[7]; CovMat(1,3)=CovMat(3,1);
388 CovMat(3,2)=cc[8]; CovMat(2,3)=CovMat(3,2);
389 CovMat(3,3)=cc[9];
390 CovMat(4,0)=cc[10]; CovMat(0,4)=CovMat(4,0);
391 CovMat(4,1)=cc[11]; CovMat(1,4)=CovMat(4,1);
392 CovMat(4,2)=cc[12]; CovMat(2,4)=CovMat(4,2);
393 CovMat(4,3)=cc[13]; CovMat(3,4)=CovMat(4,3);
394 CovMat(4,4)=cc[14];
395
396 TMatrixD ScaleMat(5,5);
397 for(Int_t k=0;k<5;k++) {
398 for(Int_t l=0;l<5;l++) {
399 ScaleMat(k,l)=0.;
400 }
401 }
402
403
404 Double_t s00[27]={1.3553,1.2973,1.2446,1.3428,1.3031,1.2345,1.3244,1.2681,1.2046,1.3046,1.2430,1.1606,1.2462,1.2104,1.1082,1.2207,1.1189,1.0789,1.2079,1.1300,1.0426,1.1502,1.1122,1.0559,1.1419,1.1072,1.0208};
405 Double_t s11[27]={1.0890,1.1463,1.2313,1.1149,1.1597,1.2280,1.1225,1.1584,1.2329,1.1149,1.1550,1.2369,1.1095,1.1353,1.2050,1.0649,1.0858,1.1546,1.0663,1.0672,1.1340,1.0416,1.0738,1.0945,1.0663,1.0654,1.0909};
406 Double_t s22[27]={1.1709,1.1367,1.0932,1.2247,1.1832,1.1247,1.2470,1.2017,1.1441,1.2202,1.1653,1.1050,1.1819,1.1269,1.0583,1.1546,1.0621,0.9928,1.1305,1.0512,0.9576,1.0995,1.0445,0.9884,1.0968,1.0368,0.9574};
407 Double_t s33[27]={0.9720,0.9869,1.0271,1.0030,1.0223,1.0479,1.0164,1.0305,1.0559,1.0339,1.0450,1.0686,1.0450,1.0507,1.0784,1.0334,1.0208,1.0863,1.0252,1.0114,1.0835,0.9854,1.0144,1.0507,1.0124,1.0159,1.0464};
408 Double_t s44[27]={1.1104,1.0789,1.0479,1.1597,1.1234,1.0728,1.2087,1.1602,1.1041,1.1942,1.1428,1.0831,1.1572,1.1036,1.0431,1.1296,1.0498,0.9844,1.1145,1.0266,0.9489,1.0959,1.0450,0.9875,1.0775,1.0266,0.9406};
409
410
411 ScaleMat(0,0) = LinearInterpolation(9,s00,pt,eta);
412 ScaleMat(1,1) = LinearInterpolation(9,s11,pt,eta);
413 ScaleMat(2,2) = LinearInterpolation(9,s22,pt,eta);
414 ScaleMat(3,3) = LinearInterpolation(9,s33,pt,eta);
415 ScaleMat(4,4) = LinearInterpolation(9,s44,pt,eta);
416
417 TMatrixD Mat(ScaleMat,TMatrixD::kMult,CovMat);
418 TMatrixD CovMatSmear(Mat,TMatrixD::kMult,ScaleMat);
419
420
421 return CovMatSmear;
422}
423
424//-----------------------------------------------------------------
425void AliTPCtrackerParam::SmearTrack(Double_t* xx,Double_t* xxsm,TMatrixD cov) {
426
427 // build triangular matrix Bmat
428 TMatrixD* Bmat = new TMatrixD(5,5);
429
430 for(Int_t j=0;j<5;j++){
431 Double_t accum = 0;
432 for(Int_t k=0;k<j;k++){
433 accum += (*Bmat)(j,k)* (*Bmat)(j,k);
434 }
435 (*Bmat)(j,j)=TMath::Sqrt(TMath::Abs(cov(j,j)-accum));
436 for(Int_t i=j+1;i<5;i++){
437 accum = 0;
438 for(Int_t k=0;k<j;k++){
439 accum+=(*Bmat)(i,k)* (*Bmat)(j,k);
440 }
441 (*Bmat)(i,j) = (cov(i,j)-accum) / (*Bmat)(j,j);
442 }
443 }
444
445 // get array of numbers with normal distribution
446 TArrayD norm;
447 norm.Set(5);
448 for(Int_t l=0;l<5;l++) {
449 norm[l]=gRandom->Gaus();
450 }
451
452 // use Bmat matrix to generate correlated numbers
453 TArrayD corr;
454 corr.Set(5);
455 for(Int_t i=0;i<5;i++){
456 corr[i]=0;
457 for(Int_t j=0;j<=i;j++) corr[i] += (*Bmat)(i,j)*norm[j];
458 }
459
460 delete Bmat;
461
462 for(Int_t l=0;l<5;l++) {
463 xxsm[l] = xx[l]+corr[l];
464 }
465
466 return;
467}
468
469//-----------------------------------------------------------------
470void AliTPCtrackerParam::CookTracks(TObjArray& tarray,TObjArray& newtarray)
471{
472 TString* s = new TString("$ALICE_ROOT/TPC/CovMatrixDB_");
473 if(fColl==0) s->Append("PbPb6000");
474 if(fBz==0.4) s->Append("_B0.4T.root");
475 // open file with matrixes DB
476 TFile* DBfile = new TFile(s->Data());
477
478 AliTPCtrack* track=new AliTPCtrack;
479 Int_t entr = (Int_t)tarray.GetEntriesFast();
480
481 for(Int_t k=0; k<entr; k++) {
482 track=(AliTPCtrack*)tarray.UncheckedAt(k);
483
484 Double_t pt = 1/TMath::Abs(track->Get1Pt());
485 Double_t eta = -TMath::Log(TMath::Tan(0.25*TMath::Pi()-0.5*TMath::ATan(track->GetTgl())));
486
487 Int_t bin = GetBin(pt,eta);
488
489 // string with tree name
490 TString str("Tree_bin");
491 str+=bin;
492
493 // get the right tree
494 TTree* CovTree = (TTree*)DBfile->Get(str.Data());
495 TArrayF* matrix = new TArrayF;
496 CovTree->SetBranchAddress("matrixes",&matrix);
497
498 // get random entry from the tree
499 Int_t Entries = (Int_t)CovTree->GetEntries();
500 CovTree->GetEvent(gRandom->Integer(Entries));
501
502 Double_t xref,alpha,xx[5],xxsm[5],cc[15];
503 Int_t lab;
504 // get P and Cosl from track
505 Double_t Cosl = TMath::Cos(TMath::ATan(track->GetTgl()));
506 Double_t P = 1/TMath::Abs(track->Get1Pt())/Cosl;
507
508 // get covariance matrix from regularized matrix
509 cc[0]=matrix->At(0)*(1.588e-3+1.911e-4/TMath::Power(P,1.5));
510 cc[1]=matrix->At(1);
511 cc[2]=matrix->At(2)*(1.195e-3+0.8102e-3/P);
512 cc[3]=matrix->At(3)*(7.275e-5+1.181e-5/TMath::Power(P,1.5));
513 cc[4]=matrix->At(4);
514 cc[5]=matrix->At(5)*(5.163e-6+1.138e-6/TMath::Power(P,2.)/Cosl);
515 cc[6]=matrix->At(6);
516 cc[7]=matrix->At(7)*(1.176e-5+1.175e-5/TMath::Power(P,1.5)/Cosl/Cosl/Cosl);
517 cc[8]=matrix->At(8);
518 cc[9]=matrix->At(9)*(1.289e-7+4.636e-7/TMath::Power(P,1.7)/Cosl/Cosl/Cosl/Cosl);
519 cc[10]=matrix->At(10)*(4.056e-7+4.379e-8/TMath::Power(P,1.5));
520 cc[11]=matrix->At(11);
521 cc[12]=matrix->At(12)*(3.049e-8+8.244e-9/TMath::Power(P,2.)/Cosl);
522 cc[13]=matrix->At(13);
523 cc[14]=matrix->At(14)*(1.847e-10+5.822e-11/TMath::Power(P,2.)/Cosl/Cosl/Cosl);
524
525 TMatrixD CovMatSmear(5,5);
526
527 CovMatSmear = GetSmearingMatrix(cc,pt,eta);
528
529 // get track original parameters
530 xref=track->GetX();
531 alpha=track->GetAlpha();
532 xx[0]=track->GetY();
533 xx[1]=track->GetZ();
534 xx[2]=track->GetX()*track->GetC()-track->GetSnp();
535 xx[3]=track->GetTgl();
536 xx[4]=track->GetC();
537 lab=track->GetLabel();
538
539 // use smearing matrix to smear the original parameters
540 SmearTrack(xx,xxsm,CovMatSmear);
541
542 AliTPCtrack* tpctrack = new AliTPCtrack(0,xxsm,cc,xref,alpha);
543 tpctrack->SetLabel(lab);
544
545 // fill the array
546 newtarray.AddLast(tpctrack);
547
548 }
549
550 DBfile->Close();
551
552 return;
553}
554//-----------------------------------------------------------------
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