68 : theVertexFinder_(nullptr)
118 "dEtacutForSCmatching");
120 "dPhicutForSCmatching");
167 auto outputConvPhotonCollection_p = std::make_unique<reco::ConversionCollection>();
173 iEvent.getByToken(
src_, trackCollectionHandle);
176 std::multimap<float, edm::Ptr<reco::ConversionTrack> > convTrackMap;
177 for (
auto const&
t : trackCollectionHandle->ptrs())
178 convTrackMap.emplace(
t->track()->eta(),
t);
185 edm::LogError(
"ConversionProducer") <<
"Error! Can't get the product primary Vertex Collection "
208 std::multimap<double, reco::CaloClusterPtr> basicClusterPtrs;
209 std::multimap<double, reco::CaloClusterPtr> superClusterPtrs;
219 outputConvPhotonCollection);
221 outputConvPhotonCollection_p->assign(outputConvPhotonCollection.begin(), outputConvPhotonCollection.end());
226 std::multimap<double, reco::CaloClusterPtr>& basicClusterPtrs,
227 std::multimap<double, reco::CaloClusterPtr>& superClusterPtrs) {
231 if (!scBarrelHandle.
isValid()) {
232 edm::LogError(
"ConvertedPhotonProducer") <<
"Error! Can't get the barrel superclusters!";
238 if (!scEndcapHandle.
isValid()) {
239 edm::LogError(
"ConvertedPhotonProducer") <<
"Error! Can't get the endcap superclusters!";
246 if (!bcBarrelHandle.
isValid()) {
247 edm::LogError(
"ConvertedPhotonProducer") <<
"Error! Can't get the barrel basic clusters!";
251 if (!bcEndcapHandle.
isValid()) {
252 edm::LogError(
"ConvertedPhotonProducer") <<
"Error! Can't get the endcap basic clusters!";
255 if (bcBarrelHandle.
isValid()) {
256 for (
auto const&
handle : {bcBarrelHandle, bcEndcapHandle}) {
257 for (
auto const& bc :
handle->ptrs()) {
259 basicClusterPtrs.emplace(bc->position().eta(), bc);
264 if (scBarrelHandle.
isValid()) {
265 for (
auto const&
handle : {scBarrelHandle, scEndcapHandle}) {
266 for (
auto const& sc :
handle->ptrs()) {
268 superClusterPtrs.emplace(sc->position().eta(), sc);
277 const std::multimap<double, reco::CaloClusterPtr>& superClusterPtrs,
278 const std::multimap<double, reco::CaloClusterPtr>& basicClusterPtrs,
303 std::map<edm::Ptr<reco::ConversionTrack>,
math::XYZPointF> trackImpactPosition;
313 const reco::Track* tk = tk_ref->second->trackRef().get();
318 trackImpactPosition[tk_ref->second] = ew;
323 trackMatchedBC[tk_ref->second] = closest_bc;
334 bool track1HighPurity =
true;
342 if (dynamic_cast<const reco::GsfTrack*>(left.
get())) {
354 track1HighPurity =
false;
357 track1HighPurity =
false;
360 std::vector<int> right_candidates;
361 std::vector<double> right_candidate_theta, right_candidate_approach;
362 std::vector<std::pair<bool, reco::Vertex> > vertex_candidates;
366 std::multimap<float, edm::Ptr<reco::ConversionTrack> >::const_iterator
rr = ll;
369 bool track2HighPurity =
true;
370 bool highPurityPair =
true;
376 if (dynamic_cast<const reco::GsfTrack*>(right.
get())) {
393 double approachDist = -999.;
414 bool goodVertex =
checkVertex(ttk_l, ttk_r, magField, theConversionVertex);
424 highPurityPair =
false;
429 track2HighPurity =
false;
432 track2HighPurity =
false;
436 std::vector<edm::RefToBase<reco::Track> > trackPairRef;
437 trackPairRef.push_back(left);
438 trackPairRef.push_back(right);
440 std::vector<math::XYZVectorF> trackPin;
441 std::vector<math::XYZVectorF> trackPout;
442 std::vector<math::XYZPointF> trackInnPos;
443 std::vector<uint8_t> nHitsBeforeVtx;
444 std::vector<Measurement1DFloat> dlClosestHitToVtx;
455 nHitsBeforeVtx.push_back(leftWrongHits.first);
456 nHitsBeforeVtx.push_back(rightWrongHits.first);
457 dlClosestHitToVtx.push_back(leftWrongHits.second);
458 dlClosestHitToVtx.push_back(rightWrongHits.second);
464 if (theConversionVertex.
isValid()) {
467 highPurityPair =
false;
471 std::vector<math::XYZPointF> trkPositionAtEcal;
472 std::vector<reco::CaloClusterPtr> matchingBC;
478 std::map<edm::Ptr<reco::ConversionTrack>,
math::XYZPointF>::const_iterator trackImpactPositionLeft =
479 trackImpactPosition.find(ll->second);
480 std::map<edm::Ptr<reco::ConversionTrack>,
math::XYZPointF>::const_iterator trackImpactPositionRight =
481 trackImpactPosition.find(
rr->second);
482 std::map<edm::Ptr<reco::ConversionTrack>,
reco::CaloClusterPtr>::const_iterator trackMatchedBCLeft =
483 trackMatchedBC.find(ll->second);
484 std::map<edm::Ptr<reco::ConversionTrack>,
reco::CaloClusterPtr>::const_iterator trackMatchedBCRight =
485 trackMatchedBC.find(
rr->second);
487 if (trackImpactPositionLeft != trackImpactPosition.end()) {
488 trkPositionAtEcal.push_back(trackImpactPositionLeft->second);
492 if (trackImpactPositionRight != trackImpactPosition.end()) {
493 trkPositionAtEcal.push_back(trackImpactPositionRight->second);
496 double total_e_bc = 0.;
497 if (trackMatchedBCLeft != trackMatchedBC.end()) {
498 matchingBC.push_back(trackMatchedBCLeft->second);
499 total_e_bc += trackMatchedBCLeft->second->energy();
503 if (trackMatchedBCRight != trackMatchedBC.end()) {
504 matchingBC.push_back(trackMatchedBCRight->second);
505 total_e_bc += trackMatchedBCRight->second->energy();
509 highPurityPair =
false;
513 highPurityPair = highPurityPair && track1HighPurity && track2HighPurity && goodVertex &&
514 checkPhi(left, right, trackerGeom, magField, theConversionVertex);
527 const float minAppDist = approachDist;
546 if (
matchingSC(superClusterPtrs, newCandidate, scPtrVec))
551 !dynamic_cast<const reco::GsfTrack*>(ll->second->trackRef().get()) &&
552 !dynamic_cast<const reco::GsfTrack*>(
rr->second->trackRef().get());
553 bool gsfTracksOpenOnly = ll->second->isGsfTrackOpen() &&
rr->second->isGsfTrackOpen();
555 bool arbitratedMerged = ll->second->isArbitratedMerged() &&
rr->second->isArbitratedMerged();
556 bool arbitratedMergedEcalGeneral =
557 ll->second->isArbitratedMergedEcalGeneral() &&
rr->second->isArbitratedMergedEcalGeneral();
565 outputConvPhotonCollection.push_back(newCandidate);
623 stateAtECAL = propag.
propagate(myTSOS, *theBarrel_);
627 stateAtECAL = propag.
propagate(myTSOS, *thePositiveEtaEndcap_);
629 stateAtECAL = propag.
propagate(myTSOS, *theNegativeEtaEndcap_);
644 double detaMin = 999.;
647 for (std::multimap<double, reco::CaloClusterPtr>::const_iterator scItr = scMap.begin(); scItr != scMap.end();
651 double sceta = sc->eta();
653 const double delta_eta = fabs(conveta - sceta);
671 const double track_eta = trackImpactPosition.eta();
672 const double track_phi = trackImpactPosition.phi();
674 double min_eta = 999., min_phi = 999.;
676 for (std::multimap<double, reco::CaloClusterPtr>::const_iterator bc = bcMap.lower_bound(track_eta -
halfWayEta_);
680 const double delta_eta = track_eta - (ebc->position().eta());
686 closest_bc = bc->second;
693 closestBC = closest_bc;
715 double recoPhoR =
vtx.position().Rho();
722 recoPhoR - 0.001, recoPhoR + 0.001, -fabs(
vtx.position().z()), fabs(
vtx.position().z()))));
731 stateAtVtx1 = propag.
propagate(myTSOS1, *theBarrel_);
733 stateAtVtx1 = propag.
propagate(myTSOS1, *theDisk_);
738 stateAtVtx2 = propag.
propagate(myTSOS2, *theBarrel_);
740 stateAtVtx2 = propag.
propagate(myTSOS2, *theDisk_);
780 double rho = tangentPoint.
perp();
791 std::pair<GlobalTrajectoryParameters, GlobalTrajectoryParameters> trajs = tangent.
trajectoryParameters();
794 if (
std::abs(trajs.first.position().z() - trajs.second.position().z()) >
dzCut_) {
798 float minApproach = tangent.
perpdist();
799 appDist = minApproach;
816 double total_e_bc = 0;
818 total_e_bc += bc_l->energy();
821 total_e_bc += bc_r->energy();
837 std::vector<reco::TransientTrack> pair;
838 pair.push_back(ttk_l);
839 pair.push_back(ttk_r);
848 const float PI = 3.1415927;
851 const float R_ECAL = 136.5;
858 float ZEcal =
R_ECAL * sinh(EtaParticle) + Zvertex;
868 if (EtaParticle < 0.0)
870 float Zlen = Zend - Zvertex;
871 float RR = Zlen / sinh(EtaParticle);
872 Theta = atan(RR / Zend);