36 #include <fastjet/ClusterSequence.hh> 37 #include <fastjet/contrib/Nsubjettiness.hh> 38 #include <fastjet/contrib/SoftDrop.hh> 42 #include <TLorentzVector.h> 44 #include <TObjString.h> 48 #include "AliAODEvent.h" 49 #include "AliAODInputHandler.h" 50 #include "AliAnalysisManager.h" 51 #include "AliAnalysisDataSlot.h" 52 #include "AliAnalysisDataContainer.h" 54 #include "AliCDBEntry.h" 55 #include "AliCDBManager.h" 68 #include "AliTriggerCluster.h" 69 #include "AliTriggerConfiguration.h" 70 #include "AliVCluster.h" 71 #include "AliVParticle.h" 73 #ifdef EXPERIMENTAL_JETCONSTITUENTS 101 fReclusterizer(kCAAlgo),
103 fHasTrueEvent(false),
104 fTriggerSelectionBits(AliVEvent::kAny),
105 fTriggerSelectionString(
""),
106 fNameTriggerDecisionContainer(
"EmcalTriggerDecision"),
107 fUseTriggerSelectionForData(false),
108 fUseDownscaleWeight(false),
109 fUseChargedConstituents(true),
110 fUseNeutralConstituents(true),
115 fFillStructGlob(true)
151 DefineOutput(2, TTree::Class());
172 clusterenergybinning(200, 0., 200),
173 timebinning(1000, -500., 500.),
174 m02binning(100, 0., 1.),
175 ncellbinning(101, -0.5, 100.5);
178 fQAHistos->
CreateTH2(
"hClusterConstE",
"EMCAL cluster energy vs jet pt; p_{t, jet} (GeV/c); E_{cl} (GeV)", jetptbinning, clusterenergybinning);
179 fQAHistos->
CreateTH2(
"hClusterConstTime",
"EMCAL cluster time vs. jet pt; p_{t, jet} (GeV/c); t_{cl} (ns)", jetptbinning, timebinning);
180 fQAHistos->
CreateTH2(
"hClusterConstM02",
"EMCAL cluster M02 vs. jet pt; p{t, jet} (GeV/c); M02", jetptbinning, m02binning);
181 fQAHistos->
CreateTH2(
"hClusterConstNcell",
"EMCAL cluster ncell vs. jet pt; p{t, jet} (GeV/c); Number of cells", jetptbinning, ncellbinning);
184 #ifdef EXPERIMENTAL_JETCONSTITUENTS 185 fQAHistos->
CreateTH2(
"hChargedConstituentPt",
"charged constituent pt vs jet pt (via constituent map); p_{t,jet} (GeV/c); p_{t,ch} (GeV/c)", jetptbinning, clusterenergybinning);
186 fQAHistos->
CreateTH2(
"hChargedIndexPt",
"charged constituent pt vs jet pt (via index map); p_{t, jet} (GeV/c); p_{t, ch} (GeV/c)", jetptbinning, clusterenergybinning);
188 fQAHistos->
CreateTH2(
"hClusterConstituentEDefault",
"cluster constituent default energy vs. jet pt (va constituent map); p_{t, jet} (GeV/c); E_{cl} (GeV)", jetptbinning, clusterenergybinning);
189 fQAHistos->
CreateTH2(
"hClusterConstituentENLC",
"cluster constituent non-linearity-corrected energy vs. jet pt (va constituent map); p_{t, jet} (GeV/c); E_{cl} (GeV)", jetptbinning, clusterenergybinning);
190 fQAHistos->
CreateTH2(
"hClusterConstituentEHC",
"cluster constituent hadronic-corrected energy vs. jet pt (va constituent map); p_{t, jet} (GeV/c); E_{cl} (GeV)", jetptbinning, clusterenergybinning);
191 fQAHistos->
CreateTH2(
"hClusterIndexENLC",
"cluster constituent non-linearity-corrected energy vs. jet pt (via index map); p_{t, jet} (GeV/c); E_{cl} (GeV)", jetptbinning, clusterenergybinning);
192 fQAHistos->
CreateTH2(
"hClusterIndexEHC",
"cluster constituent hadronic-corrected energy vs. jet pt (via index map); p_{t, jet} (GeV/c); E_{cl} (GeV)", jetptbinning, clusterenergybinning);
193 fQAHistos->
CreateTH2(
"hLeadingChargedConstituentPt",
"Pt of the leading charged constituent in jet; p_{t,jet} (GeV/c); p_{t,ch} (GeV/c)", jetptbinning, clusterenergybinning);
194 fQAHistos->
CreateTH2(
"hLeadingClusterConstituentPt",
"Pt of the leading cluster constituent in jet; p_{t,jet} (GeV/c); p_{t,ch} (GeV/c)", jetptbinning, clusterenergybinning);
199 std::string treename = this->GetOutputSlot(2)->GetContainer()->GetName();
258 std::stringstream rhoTagData, rhoTagMC;
259 if(datajets) rhoTagData <<
"R" << std::setw(2) << std::setfill(
'0') <<
static_cast<Int_t>(datajets->
GetJetRadius() * 10.);
260 if(mcjets) rhoTagMC <<
"R" << std::setw(2) << std::setfill(
'0') <<
static_cast<Int_t>(mcjets->
GetJetRadius() * 10.);
263 std::string rhoSparseData =
"RhoSparse_Full_" + rhoTagData.str(), rhoSparseMC =
"RhoSparse_Full_" + rhoTagMC.str(),
264 rhoMassData =
"RhoMassSparse_Full_" + rhoTagData.str(), rhoMassMC =
"RhoMassSparse_Full_" + rhoTagMC.str();
269 AliDebugStream(2) <<
"Found rho parameter for reconstructed pt: " << (rhoPtRec ?
"yes" :
"no") <<
", value: " << (rhoPtRec ? rhoPtRec->GetVal() : 0.) << std::endl;
270 AliDebugStream(2) <<
"Found rho parameter for sim pt: " << (rhoPtSim ?
"yes" :
"no") <<
", value: " << (rhoPtSim ? rhoPtSim->GetVal() : 0.) << std::endl;
271 AliDebugStream(2) <<
"Found rho parameter for reconstructed Mass: " << (rhoMassRec ?
"yes" :
"no") <<
", value: " << (rhoMassRec ? rhoMassRec->GetVal() : 0.) << std::endl;
272 AliDebugStream(2) <<
"Found rho parameter for sim Mass: " << (rhoMassSim ?
"yes" :
"no") <<
", value: " << (rhoMassSim ? rhoMassSim->GetVal() : 0.) << std::endl;
274 rhoPtRec ? rhoPtRec->GetVal() : 0.,
275 rhoPtSim ? rhoPtSim->GetVal() : 0.,
276 rhoMassRec ? rhoMassRec->GetVal() : 0.,
277 rhoMassSim ? rhoMassSim->GetVal() : 0.
282 AliDebugStream(1) <<
"Inspecting jet radius " << (datajets ? datajets->
GetJetRadius() : mcjets->
GetJetRadius()) << std::endl;
286 if(datajets && !mcjets){
288 std::vector<std::string> clusternames;
290 for(
auto t : triggerinfos) {
291 if(std::find(clusternames.begin(), clusternames.end(), t.Triggercluster()) == clusternames.end()) clusternames.emplace_back(t.Triggercluster());
293 bool isCENT = (std::find(clusternames.begin(), clusternames.end(),
"CENT") != clusternames.end()),
294 isCENTNOTRD = (std::find(clusternames.begin(), clusternames.end(),
"CENTNOTRD") != clusternames.end()),
295 isCALO = (std::find(clusternames.begin(), clusternames.end(),
"CALO") != clusternames.end()),
296 isCALOFAST = (std::find(clusternames.begin(), clusternames.end(),
"CALOFAST") != clusternames.end());
307 auto triggerstring =
MatchTrigger(selectionString.Data());
308 AliDebugStream(2) <<
"Getting downscale correction factor for trigger string " << triggerstring << std::endl;
311 AliDebugStream(1) <<
"Using downscale weight " << weight << std::endl;
328 nsubjettinessSettings.
fBeta = 1.;
329 nsubjettinessSettings.
fRadius = 0.4;
332 AliDebugStream(1) <<
"In data jets branch: found " << datajets->
GetNJets() <<
" jets, " << datajets->
GetNAcceptedJets() <<
" were accepted\n";
333 AliDebugStream(1) <<
"Having MC information: " << (mcjets ? TString::Format(
"yes, with %d jets", mcjets->
GetNJets()) :
"no") << std::endl;
335 AliDebugStream(1) <<
"In MC jets branch: found " << mcjets->
GetNJets() <<
" jets, " << mcjets->
GetNAcceptedJets() <<
" were accepted\n";
337 for(
auto jet : datajets->
accepted()) {
338 double pt = jet->Pt(), pz = jet->Pz(), E = jet->E(), M = TMath::Sqrt(E*E - pt*pt - pz*pz);
339 AliDebugStream(2) <<
"Next jet: pt:" << jet->Pt() <<
", E: " << E <<
", pz: " << pz <<
", M(self): " << M <<
"M(fj)" << jet->M() << std::endl;
344 AliDebugStream(2) <<
"Not found associated jet" << std::endl;
362 AliErrorStream() <<
"Error in reclusterization - skipping jet" << std::endl;
364 AliErrorStream() <<
"Error in substructure observable - skipping jet" << std::endl;
377 AliErrorStream() <<
"Error in reclusterization - skipping jet" << std::endl;
379 AliErrorStream() <<
"Error in substructure observable - skipping jet" << std::endl;
386 AliDebugStream(1) <<
"In MC pure jet branch: found " << mcjets->
GetNJets() <<
" jets, " << mcjets->
GetNAcceptedJets() <<
" were accepted\n";
397 AliErrorStream() <<
"Error in reclusterization - skipping jet" << std::endl;
399 AliErrorStream() <<
"Error in substructure observable - skipping jet" << std::endl;
409 AliDebugStream(1) <<
"Trigger selection called\n";
411 AliErrorStream() <<
"Impossible combination: Neither rec nor true event available. Rejecting ..." << std::endl;
418 AliDebugStream(1) <<
"Applying trigger selection for trigger bits " << std::bitset<sizeof(decltype(fTriggerSelectionBits)) * 8>(
fTriggerSelectionBits) <<
"and trigger selection string " <<
fTriggerSelectionString << std::endl;
420 AliDebugStream(1) <<
"Passed trigger bit selection" << std::endl;
423 AliDebugStream(1) <<
"Passed trigger string section" << std::endl;
426 AliDebugStream(1) <<
"Found trigger decision object: " << (trgselresult ?
"yes" :
"no") << std::endl;
428 AliErrorStream() <<
"Trigger decision container with name " <<
fNameTriggerDecisionContainer <<
" not found in event - not possible to select EMCAL triggers" << std::endl;
432 AliDebugStream(1) <<
"Data event selected" << std::endl;
437 if(!(fInputHandler->IsEventSelected() & AliVEvent::kINT7))
return false;
440 AliDebugStream(1) <<
"Found trigger decision object: " << (mctrigger ?
"yes" :
"no") << std::endl;
442 AliErrorStream() <<
"Trigger decision container with name " <<
fNameTriggerDecisionContainer <<
" not found in event - not possible to select EMCAL triggers" << std::endl;
453 AliCDBManager * cdb = AliCDBManager::Instance();
454 if(!fMCEvent && cdb){
456 AliCDBEntry *en = cdb->Get(
"GRP/CTP/Config");
457 AliTriggerConfiguration *trg =
static_cast<AliTriggerConfiguration *
>(en->GetObject());
458 std::vector<std::string> clusternames;
459 for(
auto c : trg->GetClusters()) {
460 AliTriggerCluster *clust =
static_cast<AliTriggerCluster *
>(
c);
461 std::string clustname = clust->GetName();
462 auto iscent = clustname.find(
"CENT") != std::string::npos, iscalo = clustname.find(
"CALO") != std::string::npos;
463 if(!(iscalo || iscent))
continue;
464 clusternames.emplace_back(clustname);
468 fLumiMonitor =
new TH1F(
"hLumiMonitor",
"Luminosity monitor", clusternames.size(), 0, clusternames.size());
470 for(
auto c : clusternames) {
471 fLumiMonitor->GetXaxis()->SetBinLabel(currentbin++,
c.data());
480 if(fInputEvent->GetFiredTriggerClasses().Contains(
"INT7")) {
482 auto int7trigger = trigger.IsTriggerClass(
"INT7");
483 auto bunchcrossing = trigger.BunchCrossing() ==
"B";
484 auto nopf = trigger.PastFutureProtection() ==
"NOPF";
485 AliDebugStream(4) <<
"Full name: " << trigger.ExpandClassName() <<
", INT7 trigger: " << (int7trigger ?
"Yes" :
"No") <<
", bunch crossing: " << (bunchcrossing ?
"Yes" :
"No") <<
", no past-future protection: " << (nopf ?
"Yes" :
"No") <<
", Cluster: " << trigger.Triggercluster() << std::endl;
486 if(int7trigger && bunchcrossing && nopf) {
487 double downscale = downscalefactors->GetDownscaleFactorForTriggerClass(trigger.ExpandClassName());
488 AliDebugStream(5) <<
"Using downscale " << downscale << std::endl;
489 fLumiMonitor->Fill(trigger.Triggercluster().data(), 1./downscale);
498 result.
fPt = TMath::Abs(jet.
Pt());
511 const int kClusterOffset = 30000;
512 std::vector<fastjet::PseudoJet> constituents;
514 AliDebugStream(2) <<
"Make new jet substrucutre for " << (isMC ?
"MC" :
"data") <<
" jet: Number of tracks " << jet.
GetNumberOfTracks() <<
", clusters " << jet.
GetNumberOfClusters() << std::endl;
517 auto track = jet.
TrackAt(itrk, tracks->GetArray());
520 fastjet::PseudoJet constituentTrack(track->Px(), track->Py(), track->Pz(), track->E());
521 constituentTrack.set_user_index(jet.
TrackAt(itrk));
522 constituents.push_back(constituentTrack);
528 auto cluster = jet.
ClusterAt(icl, clusters->GetArray());
529 TLorentzVector clustervec;
531 fastjet::PseudoJet constituentCluster(clustervec.Px(), clustervec.Py(), clustervec.Pz(), cluster->GetHadCorrEnergy());
532 constituentCluster.set_user_index(jet.
ClusterAt(icl) + kClusterOffset);
533 constituents.push_back(constituentCluster);
537 AliDebugStream(3) <<
"Found " << constituents.size() <<
" constituents for jet with pt=" << jet.
Pt() <<
" GeV/c" << std::endl;
538 if(!constituents.size()){
539 AliErrorStream() <<
"Jet has 0 constituents." << std::endl;
543 fastjet::JetDefinition jetdef(fastjet::antikt_algorithm, jetradius*2, static_cast<fastjet::RecombinationScheme>(0), fastjet::BestFJ30 );
544 std::vector<fastjet::PseudoJet> outputjets;
546 fastjet::ClusterSequence jetfinder(constituents, jetdef);
547 outputjets = jetfinder.inclusive_jets(0);
550 }
catch (fastjet::Error &e) {
551 AliErrorStream() <<
" FJ Exception caught: " << e.message() << std::endl;
554 AliErrorStream() <<
"Softdrop exception caught: " << e.
what() << std::endl;
560 fastjet::contrib::SoftDrop softdropAlgorithm(cutparameters.
fBeta, cutparameters.
fZ);
561 softdropAlgorithm.set_verbose_structure(kTRUE);
562 std::unique_ptr<fastjet::contrib::Recluster> reclusterizer(
new fastjet::contrib::Recluster(cutparameters.
fRecluserAlgo, 1,
true));
563 softdropAlgorithm.set_reclustering(kTRUE, reclusterizer.get());
564 AliDebugStream(4) <<
"Jet has " << jet.constituents().size() <<
" constituents" << std::endl;
565 auto groomed = softdropAlgorithm(jet);
567 auto softdropstruct = groomed.structure_of<fastjet::contrib::SoftDrop>();
571 softdropstruct.delta_R(),
573 softdropstruct.delta_R(),
575 softdropstruct.dropped_count()});
577 }
catch(std::bad_cast &e) {
584 fastjet::contrib::Nsubjettiness (1,fastjet::contrib::KT_Axes(),fastjet::contrib::NormalizedCutoffMeasure(cut.
fBeta, cut.
fRadius, 1e100)).result(jet),
585 fastjet::contrib::Nsubjettiness (2,fastjet::contrib::KT_Axes(),fastjet::contrib::NormalizedCutoffMeasure(cut.
fBeta, cut.
fRadius, 1e100)).result(jet)
593 TVector3 jetvec(jet.
Px(), jet.
Py(), jet.
Pz());
598 auto track = jet.
TrackAt(itrk, tracks->GetArray());
600 AliErrorStream() <<
"Associated constituent particle / track not found\n";
605 TVector3 trackvec(track->Px(), track->Py(), track->Pz());
607 num += track->Pt() * trackvec.DrEtaPhi(jetvec);
613 auto clust = jet.
ClusterAt(icl, clusters->GetArray());
615 AliErrorStream() <<
"Associated constituent cluster not found\n";
618 TLorentzVector clusterp;
621 num += clusterp.Pt() * clusterp.Vect().DrEtaPhi(jetvec);
622 den += clusterp.Pt();
635 auto trk = jet.
TrackAt(itrk, particles->GetArray());
637 AliErrorStream() <<
"Associated constituent particle / track not found\n";
642 num += trk->Pt() * trk->Pt();
648 auto clust = jet.
ClusterAt(icl, clusters->GetArray());
650 AliErrorStream() <<
"Associated constituent cluster not found\n";
653 TLorentzVector clusterp;
655 num += clusterp.Pt() * clusterp.Pt();
656 den += clusterp.Pt();
659 return TMath::Sqrt(num)/den;
664 auto clust = jet->
ClusterAt(icl, clusters->GetArray());
665 AliDebugStream(3) <<
"cluster time " << clust->GetTOF() << std::endl;
671 #ifdef EXPERIMENTAL_JETCONSTITUENTS 677 #ifdef EXPERIMENTAL_JETCONSTITUENTS 680 auto part = jet->
TrackAt(itrk, cont->GetArray());
685 AliDebugStream(2) <<
"Jet: Number of particle constituents: " << jet->
GetParticleConstituents().size() << std::endl;
688 AliDebugStream(3) <<
"Found particle constituent with pt " << part.Pt() <<
", from VParticle " << part.GetParticle()->Pt() << std::endl;
693 AliDebugStream(2) <<
"Jet: Number of cluster constituents: " << jet->
GetClusterConstituents().size() << std::endl;
696 AliDebugStream(3) <<
"Found cluster constituent with energy " << clust.E() <<
" using energy definition " <<
static_cast<int>(clust.GetDefaultEnergyType()) << std::endl;
698 fQAHistos->
FillTH2(
"hClusterConstituentENLC", jet->
Pt(), clust.GetCluster()->GetNonLinCorrEnergy());
699 fQAHistos->
FillTH2(
"hClusterConstituentEHC", jet->
Pt(), clust.GetCluster()->GetHadCorrEnergy());
706 fQAHistos->
FillTH1(
"hLeadingClusterConstituentPt", jet->
Pt(), leadingcluster->GetCluster()->GetHadCorrEnergy());
709 fQAHistos->
FillTH1(
"hLeadingChargedConstituentPt", jet->
Pt(), leadingcharged->GetParticle()->Pt());
718 auto part = jet.
TrackAt(ipart, particles->GetArray());
720 if(part->Charge()) ncharged++;
732 std::vector<std::string> tokens;
734 std::stringstream decoder(fInputEvent->GetFiredTriggerClasses().Data());
735 while(std::getline(decoder, result,
' ')) tokens.emplace_back(result);
737 for(
auto t : tokens) {
738 if(t.find(triggertoken) != std::string::npos) {
748 const std::array<std::string, 8> kEMCALTriggers = {
749 "EJ1",
"EJ2",
"DJ1",
"DJ2",
"EG1",
"EG2",
"DG1",
"DG2" 751 bool isEMCAL =
false;
752 for(
auto emcaltrg : kEMCALTriggers) {
753 if(triggerstring.find(emcaltrg) != std::string::npos) {
765 AliInputEventHandler *inputhandler =
static_cast<AliInputEventHandler *
>(mgr->GetInputEventHandler());
767 if(inputhandler->IsA() == AliAODInputHandler::Class()){
768 std::cout <<
"Analysing AOD events\n";
771 std::cout <<
"Analysing ESD events\n";
775 std::stringstream taskname;
776 taskname <<
"JetSubstructureTreemaker_R" << std::setw(2) << std::setfill(
'0') << int(jetradius*10) << trigger;
778 mgr->AddTask(treemaker);
786 particles->SetMinPt(0.);
795 mcjets->SetName(
"mcjets");
803 std::cout <<
"Track container name: " << tracks->GetName() << std::endl;
804 tracks->SetMinPt(0.15);
808 std::cout <<
"Using full or neutral jets ..." << std::endl;
810 std::cout <<
"Cluster container name: " << clusters->GetName() << std::endl;
814 std::cout <<
"Using charged jets ... " << std::endl;
824 datajets->SetName(
"datajets");
831 std::string triggerstring(trigger);
832 if(triggerstring.find(
"INT7") != std::string::npos) {
834 }
else if(triggerstring.find(
"EJ1") != std::string::npos) {
837 }
else if(triggerstring.find(
"EJ2") != std::string::npos) {
840 }
else if(triggerstring.find(
"EG1") != std::string::npos) {
843 }
else if(triggerstring.find(
"EG2") != std::string::npos) {
849 std::string jettypestring;
854 default: jettypestring =
"Undef";
858 std::stringstream outputfile, histname, treename;
859 outputfile << mgr->GetCommonFileName() <<
":JetSubstructure_" << jettypestring <<
"_R" << std::setw(2) << std::setfill(
'0') << int(jetradius * 10.) <<
"_" << trigger;
860 histname <<
"JetSubstructureHistos_" << jettypestring <<
"_R" << std::setw(2) << std::setfill(
'0') << int(jetradius * 10.) <<
"_" << trigger;
861 treename <<
"JetSubstructureTree_" << jettypestring <<
"_R" << std::setw(2) << std::setfill(
'0') << int(jetradius * 10.) <<
"_" << trigger;
862 mgr->ConnectInput(treemaker, 0, mgr->GetCommonInputContainer());
863 mgr->ConnectOutput(treemaker, 1, mgr->CreateContainer(histname.str().data(), AliEmcalList::Class(), AliAnalysisManager::kOutputContainer, outputfile.str().data()));
864 mgr->ConnectOutput(treemaker, 2, mgr->CreateContainer(treename.str().data(), TTree::Class(), AliAnalysisManager::kOutputContainer, mgr->GetCommonFileName()));
870 LinkBranch(jettree, &fZg, Form(
"Zg%s", tag),
"D");
871 LinkBranch(jettree, &fRg, Form(
"Rg%s", tag),
"D");
872 LinkBranch(jettree, &fMg, Form(
"Mg%s", tag),
"D");
873 LinkBranch(jettree, &fPtg, Form(
"Ptg%s", tag),
"D");
874 LinkBranch(jettree, &fMug, Form(
"Mug%s", tag),
"D");
875 LinkBranch(jettree, &fDeltaR, Form(
"DeltaRg%s", tag),
"D");
876 LinkBranch(jettree, &fNDropped, Form(
"NDropped%s", tag),
"I");
880 LinkBranch(jettree, &fOneSubjettiness, Form(
"OneSubjettiness%s", tag),
"D");
881 LinkBranch(jettree, &fTwoSubjettiness, Form(
"TwoSubjettiness%s", tag),
"D");
885 LinkBranch(jettree, &fAngularity, Form(
"Angularity%s", tag),
"D");
886 LinkBranch(jettree, &fPtD, Form(
"PtD%s", tag),
"D");
890 LinkBranch(jettree, &fPt, Form(
"PtJet%s", tag),
"D");
891 LinkBranch(jettree, &fE, Form(
"EJet%s", tag),
"D");
892 LinkBranch(jettree, &fEta, Form(
"Eta%s", tag),
"D");
893 LinkBranch(jettree, &fPhi, Form(
"Phi%s", tag),
"D");
894 LinkBranch(jettree, &fArea, Form(
"Area%s", tag),
"D");
895 LinkBranch(jettree, &fMass, Form(
"Mass%s", tag),
"D");
896 LinkBranch(jettree, &fNEF, Form(
"NEF%s", tag),
"D");
897 LinkBranch(jettree, &fNCharged, Form(
"NCharged%s", tag),
"I");
898 LinkBranch(jettree, &fNNeutral, Form(
"NNeutral%s", tag),
"I");
902 LinkBranch(jettree, &fJetRadius,
"Radius",
"D");
903 LinkBranch(jettree, &fEventWeight,
"EventWeight",
"D");
904 LinkBranch(jettree, &fTriggerClusterIndex,
"TriggerClusterIndex",
"I");
906 std::string varnames[] = {
"RhoPtRec",
"RhoPtSim",
"RhoMassRec",
"RhoMassSim"};
907 for(
int i = 0; i < 4; i++){
908 LinkBranch(jettree, fRhoParamters + i, varnames[i].data(),
"D");
913 void LinkBranch(
TTree *jettree,
void *data,
const char *branchname,
const char *type) {
914 jettree->Branch(branchname, data, Form(
"%s/%s", branchname, type));
TTree * fJetSubstructureTree
! Tree with jet substructure information
void LinkJetTreeBranches(TTree *jettree, bool fillRho)
void LinkJetTreeBranches(TTree *jettree, const char *tag)
Bool_t fFillStructGlob
Fill other substructure variables.
Bool_t fFillSoftDrop
Fill soft drop parameters.
Double_t fBeta
Cut on Beta.
Bool_t fHasRecEvent
Has reconstructed event (for trigger selection)
Bool_t fFillPart
Fill particle level information.
void LinkJetTreeBranches(TTree *jettree, const char *tag)
void SetTriggerString(TString triggerstring)
Class creating a linear binning, used in the histogram manager.
Double_t MakePtD(const AliEmcalJet &jet, const AliParticleContainer *const particles, const AliClusterContainer *const clusters) const
AliEmcalJet * ClosestJet() const
AliJetContainer * GetJetContainer(Int_t i=0) const
void LinkJetTreeBranches(TTree *jettree, const char *tag)
AliNSubjettinessParameters * fNSubTrue
! Data field for true n-subjettiness parameters in jet tree
virtual void UserCreateOutputObjects()
Int_t fNCharged
Number of charged constituents.
AliNSubjettinessDefinition fSubjettinessSettings
TH1 * fLumiMonitor
! Luminosity monitor
Container with name, TClonesArray and cuts for particles.
void SetUseAliAnaUtils(Bool_t b, Bool_t bRejPilup=kTRUE)
AliJetSubstructureData MakeJetSubstructure(const AliEmcalJet &jet, double jetradius, const AliParticleContainer *tracks, const AliClusterContainer *clusters, const AliJetSubstructureSettings &settings) const
Double_t fEventWeight
event weight (downscale factor)
void FillTH2(const char *hname, double x, double y, double weight=1., Option_t *opt="")
Fill a 2D histogram within the container.
Int_t ClusterAt(Int_t idx) const
TString fTriggerSelectionString
Trigger selection string.
Tree with jet substructure information.
static AliEmcalDownscaleFactorsOCDB * Instance()
Double_t fJetRadius
jet radius
Bool_t fFillNSub
Fill N-subjettiness.
Bool_t fHasTrueEvent
Has Monte-Carlo truth (for trigger selection)
AliSoftDropParameters * fSoftDropMeasured
! Data field for measured soft drop parameters in jet tree
AliSoftDropParameters fSoftDrop
AliJetContainer * AddJetContainer(const char *n, TString defaultCutType, Float_t jetRadius=0.4)
const std::vector< PWG::JETFW::AliEmcalParticleJetConstituent > & GetParticleConstituents() const
Get container with particle (track / MC particle) constituents.
Int_t fTriggerClusterIndex
Index of the trigger cluster (0 - CENT, 1 - CENTNOTRD)
void SetHasTrueEvent(Bool_t hastrue)
Structure for results from the soft drop algorithm.
Double_t GetDownscaleFactorForTriggerClass(const TString &trigger) const
virtual void UserExecOnce()
Task initializations handled in user tasks.
const PWG::JETFW::AliEmcalParticleJetConstituent * GetLeadingParticleConstituent() const
Get the leading particle constituent.
virtual bool Run()
Run function. This is the core function of the analysis and contains the user code. Therefore users have to implement this function.
void SetVzRange(Double_t min, Double_t max)
AliNSubjettinessParameters * fNSubMeasured
! Data field for measured n-subjettiness parameters in jet tree
static std::vector< PWG::EMCAL::Triggerinfo > DecodeTriggerString(const std::string &triggerstring)
Decoding trigger string.
AliClusterContainer * AddClusterContainer(const char *n)
Create new cluster container and attach it to the task.
fastjet::JetAlgorithm fRecluserAlgo
Reclusterization algorithm.
Container for particles within the EMCAL framework.
Int_t GetDefaultClusterEnergy() const
Int_t TrackAt(Int_t idx) const
void LinkJetTreeBranches(TTree *jettree, const char *tag)
UShort_t GetNumberOfTracks() const
AliJetKineParameters MakeJetKineParameters(const AliEmcalJet &jet) const
Double_t fNEF
Jet Neutral Energy Fraction.
AliParticleContainer * GetParticleContainer(Int_t i=0) const
Get particle container attached to this task.
Jet kinematic parameters.
TPC fiducial acceptance (each eta edge narrowed by jet R)
void SetRun(int runnumber)
AliRhoParameter * GetRhoFromEvent(const char *name)
AliSoftdropDefinition fSoftdropSettings
TH2 * CreateTH2(const char *name, const char *title, int nbinsx, double xmin, double xmax, int nbinsy, double ymin, double ymax, Option_t *opt="")
Create a new TH2 within the container.
UShort_t GetNumberOfClusters() const
void SetJetPtCut(Float_t cut)
THashList * GetListOfHistograms() const
Get the list of histograms.
Bool_t fFillRho
Fill rho parameters.
static AliAnalysisTaskEmcalJetSubstructureTree * AddEmcalJetSubstructureTreeMaker(Bool_t isMC, Bool_t isData, Double_t jetradius, AliJetContainer::EJetType_t jettype, AliJetContainer::ERecoScheme_t recombinationScheme, Bool_t useDCAL, const char *name)
void LinkBranch(TTree *jettree, void *data, const char *branchname, const char *type)
Helper function linking struct members to branches in the jet substructure tree.
AliJetStructureParameters * fJetStructureTrue
! True jet substructure paramteres
AliNSubjettinessParameters MakeNsubjettinessParameters(const fastjet::PseudoJet &jet, const AliNSubjettinessDefinition &cut) const
TH1 * CreateTH1(const char *name, const char *title, int nbins, double xmin, double xmax, Option_t *opt="")
Create a new TH1 within the container.
Definition for the algorithm obtaining the softdrop parameters.
AliClusterContainer * GetClusterContainer(Int_t i=0) const
Get cluster container attached to this task.
virtual const char * what() const
virtual ~AliAnalysisTaskEmcalJetSubstructureTree()
Bool_t fUseChargedConstituents
Use charged constituents.
Bool_t fUseDownscaleWeight
Use 1/downscale as weight.
virtual void RunChanged(Int_t newrun)
Process tasks relevant when a file with a different run number is processed.
AliMCParticleContainer * AddMCParticleContainer(const char *n)
Create new container for MC particles and attach it to the task.
void FillTH1(const char *hname, double x, double weight=1., Option_t *opt="")
Fill a 1D histogram within the container.
Double_t MakeAngularity(const AliEmcalJet &jet, const AliParticleContainer *tracks, const AliClusterContainer *clusters) const
virtual Bool_t IsTriggerSelected()
Selection of a hardware trigger.
std::string MatchTrigger(const std::string &triggerclass) const
Container for trigger decision object.
AliJetStructureParameters * fJetStructureMeasured
! Measured jet substructure parameters
THistManager * fQAHistos
! QA histos
bool IsSelectEmcalTriggers(const std::string &triggerstring) const
Double_t fSDZCut
Soft drop z-cut.
void SetTriggerBits(UInt_t triggersel)
Double_t fRhoParamters[4]
Rho parameters.
Double_t fSDBetaCut
Soft drop beta cut.
AliJetKineParameters * fKineRec
! Detector level jet kinematics
const PWG::JETFW::AliEmcalClusterJetConstituent * GetLeadingClusterConstituent() const
Get the leading cluster constituent.
void DoConstituentQA(const AliEmcalJet *jet, const AliParticleContainer *tracks, const AliClusterContainer *clusters)
Float_t GetJetRadius() const
const std::vector< PWG::JETFW::AliEmcalClusterJetConstituent > & GetClusterConstituents() const
Get container with cluster constituents.
AliEmcalList * fOutput
!output list
AliJetKineParameters * fKineSim
! Particle level jet kinematics
Reclusterizer_t fReclusterizer
Reclusterizer method.
Double_t fVertex[3]
!event vertex
AliTrackContainer * AddTrackContainer(const char *n)
Create new track container and attach it to the task.
AliTrackContainer * GetTrackContainer(Int_t i=0) const
void SetMakeGeneralHistograms(Bool_t g)
Base task in the EMCAL jet framework.
Represent a jet reconstructed using the EMCal jet framework.
Container class for histograms.
Global jet substructure paramters.
void SetHasRecEvent(Bool_t hasrec)
AliSoftDropParameters MakeSoftDropParameters(const fastjet::PseudoJet &jet, const AliSoftdropDefinition &cut) const
AliJetTreeGlobalParameters * fGlobalTreeParams
! Global jet tree parameters (same for all jets in event)
void UserCreateOutputObjects()
Main initialization function on the worker.
AliAnalysisTaskEmcalJetSubstructureTree()
DCal fiducial acceptance (each eta, phi edge narrowed by jet R)
const AliJetIterableContainer accepted() const
void SetDefaultClusterEnergy(Int_t d)
TString fNameTriggerDecisionContainer
Global trigger decision container.
Int_t fNNeutral
Number of neutral constituents.
bool SelectJet(const AliEmcalJet &jet, const AliParticleContainer *particles) const
AliSoftDropParameters * fSoftDropTrue
! Data field for true soft drop parameters in jet tree
Container structure for EMCAL clusters.
Container for MC-true particles within the EMCAL framework.
EMCal fiducial acceptance (each eta, phi edge narrowed by jet R)
Container for jet within the EMCAL jet framework.
AliNSubjettinessParameters fNsubjettiness
Bool_t fUseNeutralConstituents
Use neutral constituents.
Bool_t fUseTriggerSelectionForData
Use trigger selection on data (require trigger patch in addition to trigger selection string) ...
TList * OpenFile(const char *fname)
void SetClusHadCorrEnergyCut(Double_t cut)
UInt_t fTriggerSelectionBits
Trigger selection bits.
static TString TrackContainerNameFactory(Bool_t isAOD)
Get name of the default track container.
static TString ClusterContainerNameFactory(Bool_t isAOD)
Get name of the default cluster container.