6 #include <TClonesArray.h> 10 #include <THnSparse.h> 13 #include <TLorentzVector.h> 19 #include <AliAnalysisDataSlot.h> 20 #include <AliAnalysisDataContainer.h> 22 #include "TMatrixDSym.h" 23 #include "TMatrixDSymEigen.h" 26 #include "AliVCluster.h" 27 #include "AliVTrack.h" 32 #include "AliMCEvent.h" 33 #include "AliGenPythiaEventHeader.h" 34 #include "AliAODMCHeader.h" 35 #include "AliMCEvent.h" 36 #include "AliAnalysisManager.h" 43 #include "AliAODEvent.h" 55 fMinFractionShared(0),
56 fJetShapeType(kGenShapes),
58 fJetSelection(kInclusive),
71 fOptionalPartonInfo(0),
74 fangWindowRecoil(0.6),
84 fOneConstSelectOn(kFALSE),
96 fHLundIterativeInject(0x0),
98 fTreeObservableTagging(0x0),
106 fAddMedScatPtFrac(1),
111 for(
Int_t i=0;i<13;i++){
113 SetMakeGeneralHistograms(kTRUE);
114 DefineOutput(1, TList::Class());
115 DefineOutput(2, TTree::Class());
122 fMinFractionShared(0),
123 fJetShapeType(kGenShapes),
124 fJetShapeSub(kNoSub),
125 fJetSelection(kInclusive),
126 fPtThreshold(-9999.),
134 fAdditionalTracks(0),
136 fOptionalPartonInfo(0),
139 fangWindowRecoil(0.6),
146 fCentSelectOn(kTRUE),
149 fOneConstSelectOn(kFALSE),
160 fHLundIterative(0x0),
161 fHLundIterativeInject(0x0),
163 fTreeObservableTagging(0x0),
171 fAddMedScatPtFrac(1),
177 for(
Int_t i=0;i<13;i++){
182 DefineOutput(1, TList::Class());
183 DefineOutput(2, TTree::Class());
210 Bool_t oldStatus = TH1::AddDirectoryStatus();
211 TH1::AddDirectory(oldStatus);
217 const char* nameoutput = GetOutputSlot(2)->GetContainer()->GetName();
224 fShapesVarNames[0] =
"partonCode";
225 fShapesVarNames[1] =
"ptJet";
226 fShapesVarNames[2] =
"ptDJet";
227 fShapesVarNames[3] =
"mJet";
228 fShapesVarNames[4] =
"nbOfConst";
229 fShapesVarNames[5] =
"angularity";
230 fShapesVarNames[6] =
"nitersd";
231 fShapesVarNames[7] =
"niterall";
232 fShapesVarNames[8] =
"weightPythia";
239 fShapesVarNames[9] =
"SDSymm";
240 fShapesVarNames[10] =
"scaledptJet";
241 fShapesVarNames[11] =
"zg";
242 fShapesVarNames[12] =
"rg";
299 cout<<
"looping over variables"<<endl;
304 fPhiJetCorr6=
new TH2F(
"fPhiJetCorr6",
"fPhiJetCorr6", 50, 0, 2*TMath::Pi(), 50, 0, 2*TMath::Pi());
306 fEtaJetCorr6=
new TH2F(
"fEtaJetCorr6",
"fEtaJetCorr6", 50, -1.5, 1.5, 50, -1.5, 1.5);
309 fPhiJetCorr7=
new TH2F(
"fPhiJetCorr7",
"fPhiJetCorr7", 50, 0, 2*TMath::Pi(), 50, 0, 2*TMath::Pi());
311 fEtaJetCorr7=
new TH2F(
"fEtaJetCorr7",
"fEtaJetCorr7", 50, -1.5, 1.5, 50, -1.5, 1.5);
314 fPtJetCorr=
new TH2F(
"fPtJetCorr",
"fPtJetCorr", 100, 0, 200, 100, 0, 200);
316 fPtJet=
new TH1F(
"fPtJet",
"fPtJet", 100, 0, 200);
319 fhpTjetpT=
new TH2F(
"fhpTjetpT",
"fhpTjetpT", 200, 0, 200, 200, 0, 200);
321 fhPt=
new TH1F(
"fhPt",
"fhPt", 200, 0, 200);
323 fhPhi=
new TH1F(
"fhPhi",
"fhPhi", 100, -TMath::Pi(), TMath::Pi());
329 const Int_t dimSpec = 6;
330 const Int_t nBinsSpec[6] = {50,50,10,3,22,10};
331 const Double_t lowBinSpec[6] = {0.0,-10, 0,0,0,0};
332 const Double_t hiBinSpec[6] = {5.0, 0,200,3,22,10};
334 "LundIterativePlot [log(1/theta),log(z*theta),pTjet,algo,partonFlavor,depth]",
335 dimSpec,nBinsSpec,lowBinSpec,hiBinSpec);
340 const Int_t dimSpecb = 4;
341 const Int_t nBinsSpecb[4] = {50,50,20,20};
342 const Double_t lowBinSpecb[4] = {0.0,-10, 0,0};
343 const Double_t hiBinSpecb[4] = {5.0, 0,200,200};
345 "LundIterativePlotInject [log(1/theta),log(z*theta),pTjet,algo]",
346 dimSpecb,nBinsSpecb,lowBinSpecb,hiBinSpecb);
350 fNbOfConstvspT=
new TH2F(
"fNbOfConstvspT",
"fNbOfConstvspT", 100, 0, 100, 200, 0, 200);
359 delete [] fShapesVarNames;
384 AliAODTrack *triggerHadron = 0x0;
391 if (triggerHadronLabel==-99999) {
397 TClonesArray *trackArrayAn = partContAn->GetArray();
398 triggerHadron =
static_cast<AliAODTrack*
>(trackArrayAn->At(triggerHadronLabel));
400 if (!triggerHadron) {
411 fhPt->Fill(triggerHadron->Pt());
416 jetCont->ResetCurrentID();
460 Float_t dRp1 = TMath::Sqrt(jp1 * jp1 + detap1 * detap1);
470 dRp1 = TMath::Sqrt(jp1 * jp1 + detap1 * detap1);
482 ptSubtracted= jet1->
Pt();
538 AliVParticle *vp1 = 0x0;
543 Printf(
"AliVParticle associated to constituent not found");
548 Double_t dr2 = (vp1->Eta()-jet->
Eta())*(vp1->Eta()-jet->
Eta()) + dphi*dphi;
550 num=num+vp1->Pt()*dr;
576 AliVParticle *vp1 = 0x0;
581 Printf(
"AliVParticle associated to constituent not found");
585 num=num+vp1->Pt()*vp1->Pt();
588 return TMath::Sqrt(num)/den;
598 return PTD(jet, jetContNb);
619 TVector3 ppJ1(pxjet, pyjet, pzjet);
620 TVector3 ppJ3(- pxjet* pzjet, - pyjet * pzjet, pxjet * pxjet + pyjet * pyjet);
622 TVector3 ppJ2(-pyjet, pxjet, 0);
624 AliVParticle *vp1 = 0x0;
629 Printf(
"AliVParticle associated to constituent not found");
633 TVector3 pp(vp1->Px(), vp1->Py(), vp1->Pz());
636 TVector3 pLong = pp.Dot(ppJ1) / ppJ1.Mag2() * ppJ1;
637 TVector3 pPerp = pp - pLong;
640 Float_t ppjX = pPerp.Dot(ppJ2);
641 Float_t ppjY = pPerp.Dot(ppJ3);
642 Float_t ppjT = TMath::Sqrt(ppjX * ppjX + ppjY * ppjY);
643 if(ppjT<=0)
return 0;
645 mxx += (ppjX * ppjX / ppjT);
646 myy += (ppjY * ppjY / ppjT);
647 mxy += (ppjX * ppjY / ppjT);
652 if(sump2==0)
return 0;
654 Double_t ele[4] = {mxx / sump2, mxy / sump2, mxy / sump2, myy / sump2};
655 TMatrixDSym m0(2,ele);
658 TMatrixDSymEigen m(m0);
660 TMatrixD evecm = m.GetEigenVectors();
661 eval = m.GetEigenValues();
665 if (eval[0] < eval[1]) jev = 1;
668 evec0 = TMatrixDColumn(evecm, jev);
671 TVector2 evec(compx, compy);
673 if(jev==1) circ=2*eval[0];
674 if(jev==0) circ=2*eval[1];
705 AliVParticle *vp1 = 0x0;
706 AliVParticle *vp2 = 0x0;
707 std::vector<int> ordindex;
712 if(ordindex.size()<2)
return -1;
716 Printf(
"AliVParticle associated to Leading constituent not found");
722 Printf(
"AliVParticle associated to Subleading constituent not found");
742 return LeSub(jet, jetContNb);
773 if(Reclusterer->AliEmcalJetFinder::Filter(Jet, JetCont, dVtx)){;}
787 Double_t SubJetiness_Denominator = 0;
791 if(Index==-999)
return -2;
792 SubJetiness_Numerator=(Reclusterer->
GetJet(Index)->
Pt());
793 SubJetiness_Denominator=Jet->
Pt();
794 return SubJetiness_Numerator/SubJetiness_Denominator;
806 AliVParticle *vp1 = 0x0;
811 Printf(
"AliVParticle associated to constituent not found");
816 Double_t dr2 = (vp1->Eta()-jet->
Eta())*(vp1->Eta()-jet->
Eta()) + dphi*dphi;
821 return num/jet->
Pt();
846 Int_t ArraySize =N+1;
849 for (
Int_t i=0; i<ArraySize; i++){
850 JetSorter->SetAt(0,i);
852 for (
Int_t i=0; i<ArraySize; i++){
853 JetIndexSorter->SetAt(0,i);
857 SubJet=Reclusterer->
GetJet(i);
858 if (Type==0) SortingVariable=SubJet->
Pt();
859 else if (Type==1) SortingVariable=SubJet->
E();
860 else if (Type==2) SortingVariable=SubJet->
M();
861 for (
Int_t j=0; j<N; j++){
862 if (SortingVariable>JetSorter->GetAt(j)){
863 for (
Int_t k=N-1; k>=j; k--){
864 JetSorter->SetAt(JetSorter->GetAt(k),k+1);
865 JetIndexSorter->SetAt(JetIndexSorter->GetAt(k),k+1);
867 JetSorter->SetAt(SortingVariable,j);
868 JetIndexSorter->SetAt(i,j);
873 if (!Index)
return JetSorter->GetAt(N-1);
874 else return JetIndexSorter->GetAt(N-1);
899 AliVParticle *vp1 = 0x0;
904 Printf(
"AliVParticle associated to constituent not found");
912 mxx += ppt*ppt*deta*deta;
913 myy += ppt*ppt*dphi*dphi;
914 mxy -= ppt*ppt*deta*TMath::Abs(dphi);
920 if(sump2==0)
return 0;
922 Double_t ele[4] = {mxx , mxy , mxy , myy };
923 TMatrixDSym m0(2,ele);
926 TMatrixDSymEigen m(m0);
928 TMatrixD evecm = m.GetEigenVectors();
929 eval = m.GetEigenValues();
933 if (eval[0] < eval[1]) jev = 1;
936 evec0 = TMatrixDColumn(evecm, jev);
939 TVector2 evec(compx, compy);
941 if(jev==1) sig=TMath::Sqrt(TMath::Abs(eval[0])/sump2);
942 if(jev==0) sig=TMath::Sqrt(TMath::Abs(eval[1])/sump2);
956 return Sigma2(jet, jetContNb);
970 AliVParticle *vp1 = 0x0;
971 std::vector<int> ordindex;
981 Printf(
"AliVParticle associated to Leading constituent not found");
985 if (nTFractions[0] <= 0.7*ptJet){
986 nTFractions[0] += vp1->Pt();
990 if (nTFractions[2] <= 0.8*ptJet){
991 nTFractions[2] += vp1->Pt();
995 if (nTFractions[4] <= 0.9*ptJet){
996 nTFractions[4] += vp1->Pt();
1000 if (nTFractions[6] <= 0.95*ptJet){
1001 nTFractions[6] += vp1->Pt();
1039 return JetFinder->
Nsubjettiness(Jet,JetCont,dVtx,N,Algorithm,0.2,Beta,Option,0,Beta_SD,ZCut,SoftDropOn);
1051 TClonesArray *tracksArray = partCont->GetArray();
1053 if(!partCont || !tracksArray)
return -99999;
1054 AliAODTrack *track = 0x0;
1059 Int_t triggers[100];
1060 for (
Int_t iTrigger=0; iTrigger<100; iTrigger++) triggers[iTrigger] = 0;
1063 for(
Int_t iTrack=0; iTrack <= tracksArray->GetEntriesFast(); iTrack++){
1068 if (!emcPart)
continue;
1069 if(TMath::Abs(emcPart->
Eta())>0.9)
continue;
1070 if (emcPart->
Pt()<0.15)
continue;
1072 if ((emcPart->
Pt() >= minpT) && (emcPart->
Pt()< maxpT)) {
1073 trackList->Add(emcPart);
1074 triggers[iTT] = iTrack;
1079 track =
static_cast<AliAODTrack*
>(tracksArray->At(iTrack));
1080 if (!track)
continue;
1081 if(TMath::Abs(track->Eta())>0.9)
continue;
1082 if (track->Pt()<0.15)
continue;
1083 if (!(track->TestFilterBit(768)))
continue;
1085 if ((track->Pt() >= minpT) && (track->Pt()< maxpT)) {
1086 trackList->Add(track);
1087 triggers[iTT] = iTrack;
1094 if (iTT == 0)
return -99999;
1095 Int_t nbRn = 0, index = 0 ;
1096 TRandom3* random =
new TRandom3(0);
1097 nbRn = random->Integer(iTT);
1099 index = triggers[nbRn];
1108 if (vphi < -1*TMath::Pi()) vphi += (2*TMath::Pi());
1109 else if (vphi > TMath::Pi()) vphi -= (2*TMath::Pi());
1110 if (mphi < -1*TMath::Pi()) mphi += (2*TMath::Pi());
1111 else if (mphi > TMath::Pi()) mphi -= (2*TMath::Pi());
1112 double dphi = mphi-vphi;
1113 if (dphi < -1*TMath::Pi()) dphi += (2*TMath::Pi());
1114 else if (dphi > TMath::Pi()) dphi -= (2*TMath::Pi());
1135 AliInfo(
"Terminate");
1136 AliAnalysisTaskSE::Terminate();
1140 AliError(
"fOutput not available");
1146 Printf(
"ERROR: fTreeObservableTagging not available");
1155 std::vector<fastjet::PseudoJet> fInputVectors;
1156 fInputVectors.clear();
1157 Double_t JetInvMass=0, PseudJetInvMass=0, TrackMom = 0, TrackEnergy = 0;
1158 fastjet::PseudoJet PseudoTracks;
1159 fastjet::PseudoJet MyJet;
1160 fastjet::PseudoJet PseudoTracksCMS;
1167 AliVParticle *fTrk = fJet->
TrackAt(i, fTrackCont->GetArray());
1168 if (!fTrk)
continue;
1169 JetInvMass += fTrk->M();
1171 PseudoTracks.reset(fTrk->Px(), fTrk->Py(), fTrk->Pz(),fTrk->E());
1172 TrackMom += TMath::Sqrt(TMath::Power(fTrk->Px(),2)+TMath::Power(fTrk->Py(),2)+TMath::Power(fTrk->Pz(),2));
1173 TrackEnergy += fTrk->E();
1174 PseudoTracks.set_user_index(fJet->
TrackAt(i)+100);
1175 PseudJetInvMass += PseudoTracks.m();
1176 fInputVectors.push_back(PseudoTracks);
1183 MyJet.reset(fJet->
Px(),fJet->
Py(),fJet->
Pz(),fJet->
E());
1191 Double_t ppx,ppy,ppz,kTscale,lim2o,lim1o;
1196 fTf1Kt=
new TF1(
"fTf1Kt",
"1/(x*x*x*x)",lim2,lim1);
1197 kTscale=
fTf1Kt->GetRandom();
1203 lim1o=kTscale/TMath::Sin(0.1);
1204 fTf1Omega=
new TF1(
"fTf1Omega",
"1/x",lim2o,lim1o);
1208 Double_t pptheta=TMath::ASin(sinpptheta);
1212 PseudoTracksCMS.reset(kTscale/TMath::Sqrt(2),kTscale/TMath::Sqrt(2),omega*TMath::Cos(pptheta),omega);
1214 fastjet::PseudoJet PseudoTracksLab=PseudoTracksCMS.boost(MyJet);
1216 fInputVectors.push_back(PseudoTracksLab);
1218 zeta=omega/fJet->
E();
1232 fastjet::JetDefinition fJetDef(fastjet::antikt_algorithm,
fJetRadius*2, static_cast<fastjet::RecombinationScheme>(0), fastjet::BestFJ30 );
1233 fastjet::contrib::Recluster *recluster;
1235 fastjet::ClusterSequence fClustSeqSA(fInputVectors, fJetDef);
1236 std::vector<fastjet::PseudoJet> fOutputJets;
1237 fOutputJets.clear();
1238 fOutputJets=fClustSeqSA.inclusive_jets(0);
1242 fastjet::contrib::SoftDrop softdrop(beta, zcut);
1244 softdrop.set_verbose_structure(kTRUE);
1245 fastjet::JetAlgorithm jetalgo(fastjet::cambridge_algorithm);
1246 if(ReclusterAlgo==2) jetalgo=fastjet::antikt_algorithm;
1247 if(ReclusterAlgo==1) jetalgo=fastjet::kt_algorithm;
1248 if(ReclusterAlgo==0) jetalgo=fastjet::cambridge_algorithm;
1250 recluster =
new fastjet::contrib::Recluster(jetalgo,1,
true);
1251 softdrop.set_reclustering(
true,recluster);
1252 fastjet::PseudoJet finaljet = softdrop(fOutputJets[0]);
1256 Int_t NGroomedBranches;
1257 SymParam=(finaljet.structure_of<fastjet::contrib::SoftDrop>().symmetry());
1258 Mu=(finaljet.structure_of<fastjet::contrib::SoftDrop>().mu());
1259 DeltaR=(finaljet.structure_of<fastjet::contrib::SoftDrop>().delta_R());
1260 NGroomedBranches=finaljet.structure_of<fastjet::contrib::SoftDrop>().dropped_count();
1261 GroomedPt=finaljet.perp();
1262 GroomedMass=finaljet.m();
1321 }
catch (fastjet::Error) {
1322 AliError(
" [w] FJ Exception caught.");
1329 if(recluster) {
delete recluster; recluster = NULL; }
1345 std::vector<fastjet::PseudoJet> fInputVectors;
1346 fInputVectors.clear();
1347 fastjet::PseudoJet PseudoTracks;
1348 fastjet::PseudoJet PseudoTracksLab;
1350 double lnpt_relinject=0;
1353 double zinject,angleinject,pptheta,sinpptheta,omega,omega2,angle2;
1355 Float_t pTscale=0., phiscale=0., thetascale=0., pXscale=0., pYscale=0., pZscale=0., pscale=0.;
1358 AliVParticle *fTrk = fJet->
TrackAt(i, fTrackCont->GetArray());
1359 if (!fTrk)
continue;
1361 pTscale =
xfraction*sqrt(pow(fTrk->Px(),2)+pow(fTrk->Py(),2));
1362 phiscale = fTrk->Phi();
1363 thetascale = 2.*TMath::ATan(TMath::Exp(-1.*(fTrk->Eta())));
1364 pXscale = pTscale * TMath::Cos(phiscale);
1365 pYscale = pTscale * TMath::Sin(phiscale);
1366 pZscale = pTscale/TMath::Tan(thetascale);
1367 pscale = TMath::Sqrt(pTscale*pTscale+pZscale*pZscale);
1368 PseudoTracks.reset(pXscale, pYscale, pZscale, pscale);
1370 else PseudoTracks.reset(fTrk->Px(), fTrk->Py(), fTrk->Pz(),fTrk->E());
1371 PseudoTracks.set_user_index(fJet->
TrackAt(i)+100);
1372 fInputVectors.push_back(PseudoTracks);
1390 Double_t ppx,ppy,ppz,SoftkTscale,lim2o,lim1o;
1393 fTf1SoftKt=
new TF1(
"fTf1SoftKt",
"1/(x)",lim1,lim2);
1397 lim1o=SoftkTscale/TMath::Sin(0.1);
1400 sinpptheta=SoftkTscale/omega;
1401 pptheta=TMath::ASin(sinpptheta);
1404 TLorentzVector pTrackCMS(SoftkTscale/TMath::Sqrt(2),SoftkTscale/TMath::Sqrt(2),omega*TMath::Cos(pptheta),omega);
1405 TVector3 MyJet(fJet->
Px(),fJet->
Py(),fJet->
Pz());
1406 TVector3 direction = MyJet.Unit();
1408 pTrackCMS.RotateUz(direction);
1411 PseudoTracksLab.reset(pTrackCMS.Px(),pTrackCMS.Py(),pTrackCMS.Pz(),pTrackCMS.E());
1415 omega2=PseudoTracksLab.perp();
1416 angle2=pTrackCMS.Angle(MyJet);
1418 fInputVectors.push_back(PseudoTracksLab);
1432 Double_t ppx,ppy,ppz,kTscale,lim2o,lim1o;
1437 fTf1Kt=
new TF1(
"fTf1Kt",
"1/(x*x*x*x)",lim2,lim1);
1438 kTscale=
fTf1Kt->GetRandom();
1444 lim1o=kTscale/TMath::Sin(0.1);
1445 fTf1Omega=
new TF1(
"fTf1Omega",
"1/x",lim2o,lim1o);
1447 sinpptheta=kTscale/omega;
1448 pptheta=TMath::ASin(sinpptheta);
1452 TLorentzVector pTrackCMS(kTscale/TMath::Sqrt(2),kTscale/TMath::Sqrt(2),omega*TMath::Cos(pptheta),omega);
1453 TVector3 MyJet(fJet->
Px(),fJet->
Py(),fJet->
Pz());
1454 TVector3 direction = MyJet.Unit();
1456 pTrackCMS.RotateUz(direction);
1459 PseudoTracksLab.reset(pTrackCMS.Px(),pTrackCMS.Py(),pTrackCMS.Pz(),pTrackCMS.E());
1463 omega2=PseudoTracksLab.perp();
1464 angle2=pTrackCMS.Angle(MyJet);
1466 fInputVectors.push_back(PseudoTracksLab);
1473 fastjet::JetAlgorithm jetalgo(fastjet::antikt_algorithm);
1474 if(ReclusterAlgo==0){ xflagalgo=0.5;
1475 jetalgo=fastjet::kt_algorithm ;}
1477 if(ReclusterAlgo==1){ xflagalgo=1.5;
1478 jetalgo=fastjet::cambridge_algorithm;}
1479 if(ReclusterAlgo==2){ xflagalgo=2.5;
1480 jetalgo=fastjet::antikt_algorithm;}
1482 fastjet::JetDefinition fJetDef(jetalgo, 1., static_cast<fastjet::RecombinationScheme>(0), fastjet::BestFJ30 );
1485 fastjet::ClusterSequence fClustSeqSA(fInputVectors, fJetDef);
1486 std::vector<fastjet::PseudoJet> fOutputJets;
1487 fOutputJets.clear();
1488 fOutputJets=fClustSeqSA.inclusive_jets(0);
1490 fastjet::PseudoJet jj;
1491 fastjet::PseudoJet j1;
1492 fastjet::PseudoJet j2;
1498 while(jj.has_parents(j1,j2)){
1500 if(j1.perp() < j2.perp())
swap(j1,j2);
1501 double delta_R=j1.delta_R(j2);
1502 double z=j2.perp()/(j1.perp()+j2.perp());
1503 double y =log(1.0/delta_R);
1504 double lnpt_rel=log(z*delta_R);
1509 if(nsd==1 && ReclusterAlgo==1)
fShapesVar[9]=z;
1510 Double_t LundEntries[6] = {y,lnpt_rel,fOutputJets[0].perp(),xflagalgo,partonFlavor,ndepth};
1514 if(ReclusterAlgo==1){
1518 if(fAdditionalTracks>0 && xflagAdded>0){
1519 zinject=omega2/fOutputJets[0].perp();
1522 yinject =log(1.0/angleinject);
1523 lnpt_relinject=log(zinject*angleinject);
1524 Double_t LundEntriesInject[4] = {yinject,lnpt_relinject,fOutputJets[0].perp(),fJet->
Pt()};
1528 }
catch (fastjet::Error) {
1529 AliError(
" [w] FJ Exception caught.");
1549 const char *ntracksPartLevel,
1551 const char *CentEst,
1556 const char *rhoName,
1568 ::Error(
"AliAnalysisTaskEmcalJetShapesMC",
"No analysis manager found.");
1572 ismc = (mgr->GetMCtruthEventHandler())?kTRUE:kFALSE;
1576 if (!mgr->GetInputEventHandler())
1578 ::Error(
"AddTaskJetShapesMC",
"This task requires an input event handler");
1582 TString wagonName1 = Form(
"JetShapesMC_%s_Histos%s%s",njetsBase,trigClass.Data(),tag.Data());
1583 TString wagonName2 = Form(
"JetShapesMC_%s_Tree%s%s",njetsBase,trigClass.Data(),tag.Data());
1589 task->SetJetShapeType(jetShapeType);
1590 task->SetJetShapeSub(jetShapeSub);
1591 task->SetJetSelection(jetSelection);
1592 task->SetDerivativeSubtractionOrder(derivSubtrOrder);
1593 task->SetJetRadius(jetradius);
1594 task->SetSubjetRadius(subjetradius);
1605 jetContBase = task->AddJetContainer(njetsBase,strType,jetradius);
1613 task->SetCaloTriggerPatchInfoName(kEmcalTriggers.Data());
1614 task->SetCentralityEstimator(CentEst);
1615 task->SelectCollisionCandidates(pSel);
1616 task->SetUseAliAnaUtils(kFALSE);
1621 mgr->ConnectInput (task, 0, mgr->GetCommonInputContainer() );
1624 TString contName1(wagonName1);
1625 TString contName2(wagonName2);
1628 contName1 +=
"_GenShapes";
1629 contName2 +=
"_GenShapes";
1632 switch (jetShapeSub) {
1635 contName1 +=
"_NoSub";
1636 contName2 +=
"_NoSub";
1640 contName1 +=
"_ConstSub";
1641 contName2 +=
"_ConstSub";
1645 contName1 +=
"_DerivSub";
1646 contName2 +=
"_DerivSub";
1652 switch (jetSelection) {
1654 contName1 +=
"_Incl";
1655 contName2 +=
"_Incl";
1660 TString recoilTriggerString = Form(
"_Recoil_%.0f_%0.f", minpTHTrigger, maxpTHTrigger);
1661 contName1 += recoilTriggerString;
1662 contName2 += recoilTriggerString;
1669 TString outputfile = Form(
"%s",AliAnalysisManager::GetCommonFileName());
1672 AliAnalysisDataContainer *coutput1 = mgr->CreateContainer(contName1.Data(),TList::Class(),AliAnalysisManager::kOutputContainer,outputfile.Data());
1673 AliAnalysisDataContainer *coutput2 = mgr->CreateContainer(contName2.Data(),TTree::Class(),AliAnalysisManager::kOutputContainer,outputfile.Data());
1675 mgr->ConnectOutput(task,1,coutput1);
1676 mgr->ConnectOutput(task,2,coutput2);
Int_t fOptionalPartonInfo
void SetRadius(Double_t val)
Float_t GetSigma2(AliEmcalJet *jet, Int_t jetContNb=0)
Double_t GetFirstOrderSubtractedAngularity() const
Float_t GetJetMass(AliEmcalJet *jet, Int_t jetContNb=0)
void SetJetMinPt(Double_t val)
Double_t GetSecondOrderSubtractedSigma2() const
Float_t GetPartonEta6() const
AliJetContainer * GetJetContainer(Int_t i=0) const
Float_t GetPartonEta7() const
Double_t GetSecondOrderSubtractedConstituent() const
Double_t FjNSubJettiness(AliEmcalJet *Jet, Int_t JetContNb, Int_t N, Int_t Algorithm, Double_t Beta, Int_t Option, Double_t Beta_SD=0.0, Double_t ZCut=0.1, Int_t SoftDropOn=0)
Float_t GetPythiaEventWeight() const
void RecursiveParents(AliEmcalJet *fJet, AliJetContainer *fJetCont, Int_t ReclusterAlgo, Float_t PartonFlavor)
Float_t GetPartonPhi7() const
Double_t GetSecondOrderSubtractedpTD() const
Bool_t RetrieveEventObjects()
void SetPercAreaCut(Float_t p)
Double_t GetFirstOrderSubtractedLeSub() const
Float_t CoreFrac(AliEmcalJet *jet, Int_t jetContNb=0)
Float_t GetJetCircularity(AliEmcalJet *jet, Int_t jetContNb=0)
TF1 * fTf1SoftOmega
to generate kT according to BDMS tail
THnSparse * fHLundIterativeInject
Float_t GetJetpTD(AliEmcalJet *jet, Int_t jetContNb=0)
Int_t GetPartonFlag7() const
Container for particles within the EMCAL framework.
Float_t GetPartonPhi6() const
Int_t TrackAt(Int_t idx) const
Double_t GetFirstOrderSubtractedpTD() const
UShort_t GetNumberOfTracks() const
Float_t GetJetCoreFrac(AliEmcalJet *jet, Int_t jetContNb=0)
Double_t Nsubjettiness(AliEmcalJet *pJet, AliJetContainer *pContJets, Double_t dVtx[3], Int_t N, Int_t Algorithm, Double_t Radius, Double_t Beta, Int_t Option=0, Int_t Measure=0, Double_t Beta_SD=0, Double_t ZCut=0.1, Int_t SoftDropOn=0)
AliParticleContainer * GetParticleContainer(Int_t i=0) const
Get particle container attached to this task.
Double_t GetSecondOrderSubtractedLeSub() const
Int_t GetPartonFlag6() const
void SetRhoName(const char *n)
AliParticleContainer * GetParticleContainer() const
Double_t GetFirstOrderSubtractedConstituent() const
void SetRecombSheme(Int_t val)
static AliAnalysisTaskEmcalJetShapesMC * AddTaskJetShapesMC(const char *njetsBase, const Double_t jetradius, const Double_t subjetradius, const char *ntracksPartLevel, const char *type, const char *CentEst, Int_t pSel, TString trigClass="", TString kEmcalTriggers="", TString tag="", const char *rhoName="", AliAnalysisTaskEmcalJetShapesMC::JetShapeType jetShapeType=AliAnalysisTaskEmcalJetShapesMC::kGenShapes, AliAnalysisTaskEmcalJetShapesMC::JetShapeSub jetShapeSub=AliAnalysisTaskEmcalJetShapesMC::kNoSub, AliAnalysisTaskEmcalJetShapesMC::JetSelectionType jetSelection=AliAnalysisTaskEmcalJetShapesMC::kInclusive, Float_t minpTHTrigger=0., Float_t maxpTHTrigger=0., AliAnalysisTaskEmcalJetShapesMC::DerivSubtrOrder derivSubtrOrder=AliAnalysisTaskEmcalJetShapesMC::kSecondOrder)
void SetJetAlgorithm(Int_t val)
Float_t GetJetNumberOfConstituents(AliEmcalJet *jet, Int_t jetContNb=0)
Float_t fqhat
Random number generator.
Task to store and correlate the MC shapes.
TF1 * fTf1SoftKt
to generate omega for soft background
TTree * fTreeObservableTagging
! Tree with tagging variables subtracted MC or true MC or raw
Double_t RelativePhi(Double_t mphi, Double_t vphi)
Bool_t Run()
Run function. This is the core function of the analysis and contains the user code. Therefore users have to implement this function.
Double_t GetSecondOrderSubtractedAngularity() const
Double_t GetSubjetFraction(AliEmcalJet *Jet, Int_t JetContNb, Double_t JetRadius, AliEmcalJetFinder *Reclusterer)
AliAnalysisTaskEmcalJetShapesMC()
AliEmcalJetFinder * Recluster(AliEmcalJet *Jet, Int_t JetContNb, Double_t JetRadius, Double_t SubJetRadius, Double_t SubJetMinPt, Int_t Algorithm, const char *Name)
Double_t fCent
!event centrality
Double_t GetSecondOrderSubtracted() const
Float_t PTD(AliEmcalJet *jet, Int_t jetContNb=0)
void SetJetMaxEta(Double_t val)
void Terminate(Option_t *option)
AliEmcalJet * GetNextAcceptJet()
TF1 * fTf1Kt
to generate omega according to BDMPS tail
Bool_t Data(TH1F *h, Double_t *rangefit, Bool_t writefit, Double_t &sgn, Double_t &errsgn, Double_t &bkg, Double_t &errbkg, Double_t &sgnf, Double_t &errsgnf, Double_t &sigmafit, Int_t &status)
Float_t GetJetAngularity(AliEmcalJet *jet, Int_t jetContNb=0)
Int_t SelectTrigger(Float_t minpT, Float_t maxpT)
AliEmcalJet * GetJet(Int_t index)
void ConnectParticleContainer(AliParticleContainer *c)
Enhanced TList-derived class that implements correct merging for pt_hard binned production.
Float_t Angularity(AliEmcalJet *jet, Int_t jetContNb=0)
Bool_t FillHistograms()
Function filling histograms.
Double_t GetFirstOrderSubtractedCircularity() const
JetSelectionType fJetSelection
Bool_t RetrieveEventObjects()
Retrieve common objects from event.
AliEmcalList * fOutput
!output list
THnSparse * fHLundIterative
Double_t SubJetOrdering(AliEmcalJet *Jet, AliEmcalJetFinder *Reclusterer, Int_t N, Int_t Type, Bool_t Index)
void NTValues(AliEmcalJet *jet, Int_t jetContNb, Float_t *nTFractions)
Double_t GetSecondOrderSubtractedCircularity() const
Double_t DeltaR(const AliVParticle *part1, const AliVParticle *part2)
Float_t GetJetLeSub(AliEmcalJet *jet, Int_t jetContNb=0)
void UserCreateOutputObjects()
Store some informaion about a Pythia eventThis class is used to store some information about a Pythia...
void SetMakeGeneralHistograms(Bool_t g)
Base task in the EMCAL jet framework.
Represent a jet reconstructed using the EMCal jet framework.
const AliEmcalPythiaInfo * GetPythiaInfo() const
Float_t Circularity(AliEmcalJet *jet, Int_t jetContNb=0)
void SoftDrop(AliEmcalJet *fJet, AliJetContainer *fJetCont, Double_t zcut, Double_t beta, Int_t ReclusterAlgo)
Declaration of class AliEmcalPythiaInfo.
virtual ~AliAnalysisTaskEmcalJetShapesMC()
void UserCreateOutputObjects()
Main initialization function on the worker.
Double_t GetFirstOrderSubtractedSigma2() const
Float_t Sigma2(AliEmcalJet *jet, Int_t jetContNb=0)
AliEmcalJetShapeProperties * GetShapeProperties() const
Float_t GetPartonPt7() const
Float_t LeSub(AliEmcalJet *jet, Int_t jetContNb=0)
Double_t GetFirstOrderSubtracted() const
Container for jet within the EMCAL jet framework.
std::vector< int > GetPtSortedTrackConstituentIndexes(TClonesArray *tracks) const
Float_t GetPartonPt6() const