Belle II Software  release-08-01-10
PhysicsObjectsMiraBelleBhabhaModule.cc
1 /**************************************************************************
2  * basf2 (Belle II Analysis Software Framework) *
3  * Author: The Belle II Collaboration *
4  * *
5  * See git log for contributors and copyright holders. *
6  * This file is licensed under LGPL-3.0, see LICENSE.md. *
7  **************************************************************************/
8 
9 #include <dqm/modules/PhysicsObjectsMiraBelle/PhysicsObjectsMiraBelleBhabhaModule.h>
10 #include <analysis/dataobjects/ParticleList.h>
11 #include <analysis/variables/ContinuumSuppressionVariables.h>
12 #include <analysis/variables/TrackVariables.h>
13 #include <analysis/utility/PCmsLabTransform.h>
14 #include <framework/datastore/StoreObjPtr.h>
15 #include <framework/datastore/StoreArray.h>
16 #include <mdst/dataobjects/Track.h>
17 #include <mdst/dataobjects/TrackFitResult.h>
18 #include <mdst/dataobjects/KLMCluster.h>
19 #include <mdst/dataobjects/HitPatternCDC.h>
20 #include <mdst/dataobjects/HitPatternVXD.h>
21 #include <mdst/dataobjects/EventLevelTrackingInfo.h>
22 #include <mdst/dataobjects/PIDLikelihood.h>
23 #include <top/variables/TOPDigitVariables.h>
24 #include <arich/modules/arichDQM/ARICHDQMModule.h>
25 #include <arich/dataobjects/ARICHLikelihood.h>
26 #include <mdst/dataobjects/SoftwareTriggerResult.h>
27 #include <TDirectory.h>
28 #include <TMath.h>
29 #include <map>
30 
31 using namespace Belle2;
32 
33 REG_MODULE(PhysicsObjectsMiraBelleBhabha);
34 
36 {
37  setDescription("Monitor Physics Objects Quality");
39 
40  addParam("TriggerIdentifier", m_triggerIdentifier,
41  "Trigger identifier string used to select events for the histograms", std::string("software_trigger_cut&skim&accept_bhabha_all"));
42  addParam("ePListName", m_ePListName, "Name of the electron particle list", std::string("e+:physMiraBelle"));
43  addParam("bhabhaPListName", m_bhabhaPListName, "Name of the bhabha events particle list", std::string("Upsilon:ephysMiraBelle"));
44 
45 }
46 
48 {
49  TDirectory* oldDir = gDirectory;
50  oldDir->mkdir("PhysicsObjectsMiraBelleBhabha");
51  oldDir->cd("PhysicsObjectsMiraBelleBhabha");
52 
53  m_h_npxd = new TH1F("hist_npxd", "hist_npxd", 100, 0, 5);
54  m_h_npxd->SetXTitle("hist_npxd");
55  m_h_nsvd = new TH1F("hist_nsvd", "hist_nsvd", 100, 0, 16);
56  m_h_nsvd->SetXTitle("hist_nsvd");
57  m_h_ncdc = new TH1F("hist_ncdc", "hist_ncdc", 100, 0, 80);
58  m_h_ncdc->SetXTitle("hist_ncdc");
59  m_h_topdig = new TH1F("hist_topdig", "hist_topdig", 120, 0, 120);
60  m_h_topdig->SetXTitle("hist_topdig");
61  m_h_DetPhotonARICH = new TH1F("hist_DetPhotonARICH", "hist_DetPhotonARICH", 70, 0, 70);
62  m_h_DetPhotonARICH->SetXTitle("hist_DetPhotonARICH");
63  m_h_Pval = new TH1F("hist_Pval", "hist_Pval", 100, 0, 1);
64  m_h_Pval->SetXTitle("hist_Pval");
65  m_h_dD0 = new TH1F("hist_dD0", "hist_dD0", 100, -0.02, 0.02);
66  m_h_dD0->SetXTitle("hist_dD0");
67  m_h_dZ0 = new TH1F("hist_dZ0", "hist_dZ0", 100, -0.05, 0.05);
68  m_h_dZ0->SetXTitle("hist_dZ0");
69  m_h_dPtcms = new TH1F("hist_dPtcms", "hist_dPtcms", 100, -0.5, 0.5);
70  m_h_dPtcms->SetXTitle("hist_dPtcms");
71  m_h_nExtraCDCHits = new TH1F("hist_nExtraCDCHits", "hist_nExtraCDCHits", 500, 0, 5000);
72  m_h_nExtraCDCHits->SetXTitle("hist_nExtraCDCHits");
73  m_h_nECLClusters = new TH1F("hist_nECLClusters", "hist_nECLClusters", 100, 0, 60);
74  m_h_nECLClusters->SetXTitle("hist_nECLClusters");
75  m_h_electronid = new TH1F("hist_electronid", "hist_electronid", 20, 0, 1);
76  m_h_electronid->SetXTitle("hist_electronid");
77  m_h_inv_p = new TH1F("hist_inv_p", "hist_inv_p", 400, 0, 12);
78  m_h_inv_p->SetXTitle("hist_inv_p");
79  m_h_ndf = new TH1F("hist_ndf", "hist_ndf", 100, 0, 80);
80  m_h_ndf->SetXTitle("hist_ndf");
81  m_h_D0 = new TH1F("hist_D0", "hist_D0", 100, -0.1, 0.1);
82  m_h_D0->SetXTitle("hist_D0");
83  m_h_Z0 = new TH1F("hist_Z0", "hist_Z0", 100, -0.3, 0.3);
84  m_h_Z0->SetXTitle("hist_Z0");
85  m_h_theta = new TH1F("hist_theta", "hist_theta in CMS", 32, 10, 170);
86  m_h_theta->SetXTitle("hist_theta");
87  m_h_theta_lab = new TH1F("hist_theta_lab", "hist_theta in lab frame", 180, 0, 180);
88  m_h_theta_lab->SetXTitle("hist_theta_lab");
89  m_h_Phi0 = new TH1F("hist_Phi0", "hist_Phi0 in lab frame", 72, -180, 180);
90  m_h_Phi0->SetXTitle("hist_Phi0");
91  m_h_Pt = new TH1F("hist_Pt", "hist_Pt", 100, 0, 10);
92  m_h_Pt->SetXTitle("hist_Pt");
93  m_h_Mom = new TH1F("hist_Mom", "hist_Mom", 100, 0, 10);
94  m_h_Mom->SetXTitle("hist_Mom");
95  m_h_dPhicms = new TH1F("hist_dPhicms", "hist_dPhicms: 180#circ - |#phi_{1} - #phi_{2}|", 100, -10, 10);
96  m_h_dPhicms->SetXTitle("hist_dPhicms");
97  m_h_dThetacms = new TH1F("hist_dThetacms", "hist_dThetacms: |#theta_{1} + #theta_{2}| - 180#circ", 100, -10, 10);
98  m_h_dThetacms->SetXTitle("hist_dThetacms");
99 
100  oldDir->cd();
101 }
102 
103 
105 {
106  REG_HISTOGRAM
107 
109  result.isOptional();
110 }
111 
113 {
114  m_h_npxd->Reset();
115  m_h_nsvd->Reset();
116  m_h_ncdc->Reset();
117  m_h_topdig->Reset();
118  m_h_DetPhotonARICH->Reset();
119  m_h_Pval->Reset();
120  m_h_dD0->Reset();
121  m_h_dZ0->Reset();
122  m_h_dPtcms->Reset();
123  m_h_nExtraCDCHits->Reset();
124  m_h_nECLClusters->Reset();
125  m_h_electronid->Reset();
126  m_h_inv_p->Reset();
127  m_h_ndf->Reset();
128  m_h_D0->Reset();
129  m_h_Z0->Reset();
130  m_h_theta->Reset();
131  m_h_theta_lab->Reset();
132  m_h_Phi0->Reset();
133  m_h_Pt->Reset();
134  m_h_Mom->Reset();
135  m_h_dPhicms->Reset();
136  m_h_dThetacms->Reset();
137 }
138 
140 {
141 
143  if (!result.isValid()) {
144  B2WARNING("SoftwareTriggerResult object not available but needed to select events for the histograms.");
145  return;
146  }
147 
148  const std::map<std::string, int>& results = result->getResults();
149  if (results.find(m_triggerIdentifier) == results.end()) {
150  B2WARNING("PhysicsObjectsMiraBelleBhabha: Can't find trigger identifier: " << m_triggerIdentifier);
151  return;
152  }
153 
154  // apply software trigger
155  const bool accepted = (result->getResult(m_triggerIdentifier) == SoftwareTriggerCutResult::c_accept);
156  if (accepted == false) return;
157 
158  // for resolution (difference b/w 2 tracks)
159  double d0[2] = {};
160  double z0[2] = {};
161  double ptcms[2] = {};
162  double phicms[2] = {};
163  double thetacms[2] = {};
164 
165  //get the bhabha events for beam energy check
167  if (UpsParticles.isValid()) {
168  for (unsigned int i = 0; i < UpsParticles->getListSize(); i++) {
169  Particle* Ups = UpsParticles->getParticle(i);
170  m_h_inv_p->Fill(Ups->getMass());
171  }
172  }
173 
174  // get electrons
175  StoreObjPtr<ParticleList> electronParticles(m_ePListName);
176  for (unsigned int i = 0; i < electronParticles->getListSize(); i++) {
177  Particle* electron = electronParticles->getParticle(i);
178  const Belle2::Track* track = electron->getTrack();
179  if (!track) {
180  continue;
181  }
182 
183  // Detector hits
184  m_h_npxd->Fill(Belle2::Variable::trackNPXDHits(electron));
185  m_h_nsvd->Fill(Belle2::Variable::trackNSVDHits(electron));
186  m_h_ncdc->Fill(Belle2::Variable::trackNCDCHits(electron));
187  m_h_topdig->Fill(Belle2::Variable::TOPVariable::topDigitCount(electron));
188  ARICHLikelihood* lkh = track->getRelated<ARICHLikelihood>();
189  if (lkh) {
190  m_h_DetPhotonARICH->Fill(lkh->getDetPhot());
191  }
192 
193  // electron ID
194  PIDLikelihood* pid_lkh = track->getRelated<PIDLikelihood>();
195  if (pid_lkh) {
197  }
198 
199  // Track variables
200  const TrackFitResult* fitresult = track->getTrackFitResult(Belle2::Const::pion);
201  if (fitresult) {
202  // Pvalue
203  double pval = fitresult->getPValue();
204  m_h_Pval->Fill(pval);
205  // separate electron+ and electron-
206  int index = fitresult->getChargeSign() > 0 ? 0 : 1;
207  d0[index] = fitresult->getD0();
208  z0[index] = fitresult->getZ0();
209  m_h_D0->Fill(d0[index]);
210  m_h_Z0->Fill(z0[index]);
211  // Momentum
212  ptcms[index] = Belle2::PCmsLabTransform::labToCms(fitresult->get4Momentum()).Pt();//CMS
213  phicms[index] = Belle2::PCmsLabTransform::labToCms(fitresult->get4Momentum()).Phi() * TMath::RadToDeg();
214  thetacms[index] = Belle2::PCmsLabTransform::labToCms(fitresult->get4Momentum()).Theta() * TMath::RadToDeg();
215  m_h_Pt->Fill(fitresult->get4Momentum().Pt());//Lab
216  m_h_theta->Fill(Belle2::PCmsLabTransform::labToCms(fitresult->get4Momentum()).Theta() * TMath::RadToDeg());//CMS
217  m_h_theta_lab->Fill(fitresult->get4Momentum().Theta() * TMath::RadToDeg());//Lab
218  m_h_Phi0->Fill(fitresult->get4Momentum().Phi() * TMath::RadToDeg());//Lab
219  m_h_Mom->Fill(fitresult->get4Momentum().P());//Lab
220  }
221  }
222  // Resolution
223  m_h_dD0->Fill((d0[0] + d0[1]) / sqrt(2));
224  m_h_dZ0->Fill((z0[0] - z0[1]) / sqrt(2));
225  m_h_dPtcms->Fill((ptcms[0] - ptcms[1]) / sqrt(2));
226  m_h_dPhicms->Fill(180 - abs(phicms[0] - phicms[1]));
227  m_h_dThetacms->Fill(abs(thetacms[0] + thetacms[1]) - 180);
228  // Event level information
230  if (elti) {
231  m_h_nExtraCDCHits->Fill(elti->getNCDCHitsNotAssigned());
232  }
233  //nECLClustersLE
234  double neclClusters = -1.;
235  StoreArray<ECLCluster> eclClusters;
236  if (eclClusters.isValid()) {
237  const unsigned int numberOfECLClusters = std::count_if(eclClusters.begin(), eclClusters.end(),
238  [](const ECLCluster & eclcluster) {
239  return (eclcluster.hasHypothesis(ECLCluster::EHypothesisBit::c_nPhotons)
240  and eclcluster.getEnergy(ECLCluster::EHypothesisBit::c_nPhotons) > 0.1);
241  });
242  neclClusters = numberOfECLClusters;
243  }
244  m_h_nECLClusters->Fill(neclClusters);
245 }
246 
248 {
249 }
250 
252 {
253 }
254 
This is a class to store ARICH likelihoods in the datastore.
float getDetPhot() const
Return number of detected photons for a given particle.
static const ChargedStable pion
charged pion particle
Definition: Const.h:652
static const ChargedStable electron
electron particle
Definition: Const.h:650
ECL cluster data.
Definition: ECLCluster.h:27
HistoModule.h is supposed to be used instead of Module.h for the modules with histogram definitions t...
Definition: HistoModule.h:29
void setDescription(const std::string &description)
Sets the description of the module.
Definition: Module.cc:214
void setPropertyFlags(unsigned int propertyFlags)
Sets the flags for the module properties.
Definition: Module.cc:208
@ c_ParallelProcessingCertified
This module can be run in parallel processing mode safely (All I/O must be done through the data stor...
Definition: Module.h:80
static ROOT::Math::PxPyPzMVector labToCms(const ROOT::Math::PxPyPzMVector &vec)
Transforms Lorentz vector into CM System.
Class to collect log likelihoods from TOP, ARICH, dEdx, ECL and KLM aimed for output to mdst includes...
Definition: PIDLikelihood.h:26
double getProbability(const Const::ChargedStable &p1, const Const::ChargedStable &p2, Const::PIDDetectorSet set=Const::PIDDetectorSet::set()) const
Return combined likelihood probability for a particle being p1 and not p2, assuming equal prior proba...
Definition: PIDLikelihood.h:83
Class to store reconstructed particles.
Definition: Particle.h:75
double getMass() const
Returns invariant mass (= nominal for FS particles)
Definition: Particle.h:479
TH1F * m_h_dZ0
histogram for Z0 difference between e+ and e-
TH1F * m_h_DetPhotonARICH
histogram for number of photon in ARICH associated with electron track
TH1F * m_h_dPhicms
histogram for phi difference between e+ and e- in CMS
TH1F * m_h_Mom
histogram for Momentum of electron track
void event() override
This method is called for each event.
TH1F * m_h_dPtcms
histogram for Pt difference between e+ and e-
TH1F * m_h_theta
histogram for theta of electron track
TH1F * m_h_ncdc
histogram for number of CDC hits associated with electron track
void endRun() override
This method is called if the current run ends.
TH1F * m_h_npxd
histogram for number of PXD hits associated with electron track
void terminate() override
This method is called at the end of the event processing.
std::string m_triggerIdentifier
Trigger identifier string used to select events for the histograms.
TH1F * m_h_dThetacms
histogram for theta difference between e+ and e- in CMS
void beginRun() override
Called when entering a new run.
TH1F * m_h_theta_lab
histogram for theta of electron track in lab frame
TH1F * m_h_nsvd
histogram for number of SVD hits associated with electron track
TH1F * m_h_nExtraCDCHits
histogram for number of CDC hits not associated with any tracks
TH1F * m_h_dD0
histogram for D0 difference between e+ and e-
TH1F * m_h_topdig
histogram for TOP digits associated with electron track
TH1F * m_h_inv_p
histogram for invariant mass of di-electron
TH1F * m_h_Pval
histogram for Pvalue of tracks in CDC
TH1F * m_h_Phi0
histogram for phi of electron track
std::string m_bhabhaPListName
Name of the e+e- (Upsilon) particle list.
void defineHisto() override
Definition of the histograms.
Accessor to arrays stored in the data store.
Definition: StoreArray.h:113
bool isValid() const
Check wether the array was registered.
Definition: StoreArray.h:288
iterator end()
Return iterator to last entry +1.
Definition: StoreArray.h:320
iterator begin()
Return iterator to first entry.
Definition: StoreArray.h:318
Type-safe access to single objects in the data store.
Definition: StoreObjPtr.h:96
bool isValid() const
Check whether the object was created.
Definition: StoreObjPtr.h:111
Values of the result of a track fit with a given particle hypothesis.
short getChargeSign() const
Return track charge (1 or -1).
double getPValue() const
Getter for Chi2 Probability of the track fit.
ROOT::Math::PxPyPzEVector get4Momentum() const
Getter for the 4Momentum at the closest approach of the track in the r/phi projection.
double getD0() const
Getter for d0.
double getZ0() const
Getter for z0.
Class that bundles various TrackFitResults.
Definition: Track.h:25
REG_MODULE(arichBtest)
Register the Module.
void addParam(const std::string &name, T &paramVariable, const std::string &description, const T &defaultValue)
Adds a new parameter to the module.
Definition: Module.h:560
double sqrt(double a)
sqrt for double
Definition: beamHelpers.h:28
@ c_accept
Accept this event.
Abstract base class for different kinds of events.