Belle II Software  light-2403-persian
TauDecayModeModule.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 <analysis/modules/TauDecayMode/TauDecayModeModule.h>
10 #include <framework/datastore/StoreArray.h>
11 #include <framework/datastore/StoreObjPtr.h>
12 #include <framework/logging/Logger.h>
13 #include <framework/particledb/EvtGenDatabasePDG.h>
14 #include <iostream>
15 #include <vector>
16 #include <algorithm>
17 #include <TParticlePDG.h>
18 #include <map>
19 #include <fstream>
20 #include <set>
21 using namespace std;
22 using namespace Belle2;
23 
24 std::map<std::string, int> make_map(const std::string& file, int chg)
25 {
26  std::string fileName;
27  if (file == "") {
28  if (chg < 0) {
29  B2INFO("Missing input mapping file: use mp_file_minus=basf2.find_file('data/analysis/modules/TauDecayMode/map_tauminus.txt') TauDecayMode.param('file_minus', mp_file_minus) to classify with default mapping.");
30  } else {
31  B2INFO("Missing input mapping file: use mp_file_plus=basf2.find_file('data/analysis/modules/TauDecayMode/map_tauplus.txt') TauDecayMode.param('file_plus', mp_file_plus) to classify with default mapping.");
32  }
33  } else {
34  fileName = file;
35  }
36 
37  ifstream f;
38  f.open(fileName);
39  std::string line;
40  std::string key;
41  int value;
42  std::map <std::string, int> map_tau;
43  while (f.good()) {
44  getline(f, line);
45  istringstream ss(line);
46  ss >> key >> value;
47  map_tau[key] = value;
48  }
49  f.close();
50  return map_tau;
51 }
52 
53 //-----------------------------------------------------------------
54 // Register the Module
55 //-----------------------------------------------------------------
56 REG_MODULE(TauDecayMode);
57 //-----------------------------------------------------------------
58 // Implementation
59 //-----------------------------------------------------------------
60 
61 TauDecayModeModule::TauDecayModeModule() : Module(), m_taum_no(0), m_taup_no(0), m_mmode(-2), m_pmode(-2),
62  m_mprong(0), m_pprong(0), tauPair(false), numOfTauMinus(0), numOfTauPlus(0), idOfTauMinus(-1), idOfTauPlus(-1),
63  m_isEtaPizPizPizFromTauMinus(false), m_isEtaPizPizPizFromTauPlus(false),
64  m_isOmegaPimPipFromTauMinus(false), m_isOmegaPimPipFromTauPlus(false)
65 {
66  // Set module properties
67  setDescription("Module to identify generated tau pair decays, using MCParticle information."
68  "By default, each tau decay is numbered as TauolaBelle2DecayMode [Ref: BELLE2-NOTE-PH-2020-055]");
69  //Parameter definition
70  addParam("printmode", m_printmode, "Printout more information from each event", std::string("default"));
71  addParam("file_minus", m_file_minus, "Path for an alternative mapping for tau- decays", std::string(""));
72  addParam("file_plus", m_file_plus, "Path for an alternative mapping for tau+ decays", std::string(""));
73 }
74 
75 //
77 {
78  mode_decay_minus = make_map(m_file_minus, -1);
79  mode_decay_plus = make_map(m_file_plus, 1);
80  m_tauDecay.registerInDataStore();
81  m_event_metadata.isRequired();
82 }
83 
84 //
86 {
87 
89  if (tauPair) {
90 
92 
93  if (m_printmode == "missing") {
94  if (m_mmode == -1) {
95  B2INFO("TauDecayMode:: EventNumber = " << m_event_metadata->getEvent()
96  << " Decay: tau- -> " << m_tauminusdecaymode << " Mode = " << m_mmode);
97  }
98  if (m_pmode == -1) {
99  B2INFO("TauDecayMode:: EventNumber = " << m_event_metadata->getEvent()
100  << " Decay: tau+ -> " << m_tauplusdecaymode << " Mode = " << m_pmode);
101  }
102  }
103 
104  if (m_printmode == "all") {
105  B2INFO("TauDecayMode:: EventNumber = " << m_event_metadata->getEvent()
106  << " Decay: tau- -> " << m_tauminusdecaymode << " Mode = " << m_mmode);
107  B2INFO("TauDecayMode:: EventNumber = " << m_event_metadata->getEvent()
108  << " Decay: tau+ -> " << m_tauplusdecaymode << " Mode = " << m_pmode);
109  }
110 
111  //
112  if (m_mmode == -1) {
113  m_taum_no = m_taum_no - 1;
114  m_mmode = m_taum_no;
115  }
116  if (m_pmode == -1) {
117  m_taup_no = m_taup_no - 1;
118  m_pmode = m_taup_no;
119  }
120 
123 
124  } else {
125  m_pmode = -1;
126  m_mmode = -1;
127  m_pprong = -1;
128  m_mprong = -1;
129  }
130 
131  if (!m_tauDecay) m_tauDecay.create();
132  m_tauDecay->addTauMinusIdMode(m_mmode);
133  m_tauDecay->addTauPlusIdMode(m_pmode);
134 
135  m_tauDecay->addTauPlusMcProng(m_pprong);
136  m_tauDecay->addTauMinusMcProng(m_mprong);
137 
138 }
139 
141 {
142  // Clear local vectors
143  vec_nut.clear();
144  vec_anut.clear();
145  vec_numu.clear();
146  vec_anumu.clear();
147  vec_nue.clear();
148  vec_anue.clear();
149  vec_em.clear();
150  vec_ep.clear();
151  vec_mum.clear();
152  vec_mup.clear();
153  vec_pim.clear();
154  vec_pip.clear();
155  vec_km.clear();
156  vec_kp.clear();
157  vec_apro.clear();
158  vec_pro.clear();
159  vec_pi0.clear();
160  vec_k0s.clear();
161  vec_k0l.clear();
162  vec_eta.clear();
163  vec_omega.clear();
164  vec_etapr.clear();
165  vec_phi.clear();
166  vec_rhom.clear();
167  vec_rhop.clear();
168  vec_rho0.clear();
169  vec_kstarm.clear();
170  vec_kstarp.clear();
171  vec_kstar0.clear();
172  vec_kstar0_br.clear();
173  vec_a1m.clear();
174  vec_a1p.clear();
175  vec_a00_980.clear();
176  vec_a0m_980.clear();
177  vec_a0p_980.clear();
178  vec_a00_1450.clear();
179  vec_a0m_1450.clear();
180  vec_a0p_1450.clear();
181  vec_b1m.clear();
182  vec_b1p.clear();
183  vec_f1.clear();
184  vec_f0.clear();
185  vec_lambda.clear();
186  vec_lmb_br.clear();
187  vec_alpha.clear();
188  vec_gam.clear();
189  //
190  map<int, std::vector<int>> map_vec;
191  //
192  map_vec[11] = vec_em;
193  map_vec[-11] = vec_ep;
194  map_vec[12] = vec_nue;
195  map_vec[-12] = vec_anue;
196  map_vec[13] = vec_mum;
197  map_vec[-13] = vec_mup;
198  map_vec[14] = vec_numu;
199  map_vec[-14] = vec_anumu;
200  map_vec[16] = vec_nut;
201  map_vec[-16] = vec_anut;
202  map_vec[-211] = vec_pim;
203  map_vec[211] = vec_pip;
204  map_vec[-321] = vec_km;
205  map_vec[321] = vec_kp;
206  map_vec[-2212] = vec_apro;
207  map_vec[2212] = vec_pro;
208  map_vec[111] = vec_pi0;
209  map_vec[310] = vec_k0s;
210  map_vec[130] = vec_k0l;
211  map_vec[221] = vec_eta;
212  map_vec[223] = vec_omega;
213  map_vec[331] = vec_etapr;
214  map_vec[333] = vec_phi;
215  map_vec[-213] = vec_rhom;
216  map_vec[213] = vec_rhop;
217  map_vec[113] = vec_rho0;
218  map_vec[-323] = vec_kstarm;
219  map_vec[323] = vec_kstarp;
220  map_vec[313] = vec_kstar0;
221  map_vec[-313] = vec_kstar0_br;
222  map_vec[-20213] = vec_a1m;
223  map_vec[20213] = vec_a1p;
224  map_vec[-9000211] = vec_a0m_980;
225  map_vec[9000211] = vec_a0p_980;
226  map_vec[9000111] = vec_a00_980;
227  map_vec[-10211] = vec_a0m_1450;
228  map_vec[10211] = vec_a0p_1450;
229  map_vec[10111] = vec_a00_1450;
230  map_vec[-10213] = vec_b1m;
231  map_vec[10213] = vec_b1p;
232  map_vec[20223] = vec_f1;
233  map_vec[9010221] = vec_f0;
234  map_vec[3122] = vec_lambda;
235  map_vec[-3122] = vec_lmb_br;
236  map_vec[94144] = vec_alpha;
237  map_vec[22] = vec_gam;
238 
239  bool elecFirst = true;
240  bool muonFirst = true;
241 
242  bool isPiPizGamTauMinusFirst = true;
243  bool isPiPizGamTauPlusFirst = true;
244 
245  bool isLFVTauMinus2BodyDecayFirst = true;
246  bool isLFVTauPlus2BodyDecayFirst = true;
247 
248  bool isChargedRhoFromTauMinusFirst = true;
249  bool isChargedRhoFromTauPlusFirst = true;
250 
251  bool isChargedA1FromTauMinusFirst = true;
252  bool isChargedA1FromTauPlusFirst = true;
253 
254  bool isEtaPPGFromTauMinusFirst = true;
255  bool isEtaPPGFromTauPlusFirst = true;
256 
257  bool isOmegaPizGamFromTauMinusFirst = true;
258  bool isOmegaPizGamFromTauPlusFirst = true;
259 
260  bool isEtaPizPizPizFromTauMinusFirst = true;
261  bool isEtaPizPizPizFromTauPlusFirst = true;
262 
265 
266  bool isOmegaPimPipFromTauMinusFirst = true;
267  bool isOmegaPimPipFromTauPlusFirst = true;
268 
271 
272  // Loop of MCParticles
273  for (int i = 0; i < MCParticles.getEntries(); i++) {
274 
275  MCParticle& p = *MCParticles[i];
276 
277  int pdgid = p.getPDG();
278 
279  if (pdgid == -Const::Klong.getPDGCode()) pdgid = Const::Klong.getPDGCode(); // Strange feature in TauolaBelle2
280 
281  if (!p.hasStatus(MCParticle::c_PrimaryParticle))
282  continue; // only consider particles coming from generator, e.g. discard particles added by Geant4
283  if (p.isInitial()) continue; // pick e- e+, but not from the incoming beams
284 
285  if (pdgid == Const::electron.getPDGCode() && elecFirst) {
286  elecFirst = false;
287  const MCParticle* mother = p.getMother();
288  if (not mother) continue; // In some low multiplicity generators there may be no mother
289  const vector<MCParticle*> daughters = mother->getDaughters();
290  int nElMinus = 0;
291  int nElPlus = 0;
292  stringstream elec_ss;
293  for (MCParticle* d : daughters) {
294  if (!d->hasStatus(MCParticle::c_PrimaryParticle)) continue;
295  elec_ss << d->getPDG() << " ";
296  if (d->getPDG() == Const::electron.getPDGCode()) nElMinus++;
297  if (d->getPDG() == -Const::electron.getPDGCode()) nElPlus++;
298  }
299  if (nElMinus == 1 && nElPlus == 1) { // use this information in getRecursiveMotherCharge
300  B2DEBUG(1, "Mother of elec pair is = " << mother->getPDG() << " which has daughters : " << elec_ss.str());
301  }
302  }
303 
304  if (pdgid == Const::muon.getPDGCode() && muonFirst) {
305  muonFirst = false;
306  const MCParticle* mother = p.getMother();
307  if (not mother) continue; // In some low multiplicity generators there may be no mother
308  const vector<MCParticle*> daughters = mother->getDaughters();
309  int nMuMinus = 0;
310  int nMuPlus = 0;
311  stringstream muon_ss;
312  for (MCParticle* d : daughters) {
313  if (!d->hasStatus(MCParticle::c_PrimaryParticle)) continue;
314  muon_ss << d->getPDG() << " ";
315  if (d->getPDG() == Const::muon.getPDGCode()) nMuMinus++;
316  if (d->getPDG() == -Const::muon.getPDGCode()) nMuPlus++;
317  }
318  if (nMuMinus == 1 && nMuPlus == 1) { // use this information in getRecursiveMotherCharge
319  B2DEBUG(1, "Mother of muon pair is = " << mother->getPDG() << " which has daughters : " << muon_ss.str());
320  }
321  }
322 
323  // Special treatment for photons
324  bool accept_photon = false;
325  if (pdgid == Const::photon.getPDGCode()) {
326  const MCParticle* mother = p.getMother();
327  if (not mother) continue; // In some low multiplicity generators there may be no mother
328  int mothid = abs(mother->getPDG());
329 
330  // check if the gamma comes from final state charged particles {e, mu, pi, K, p, b_1}
331  bool isRadiationfromFinalStateChargedParticle = false;
332  if (mothid == 11 ||
333  mothid == 13 ||
334  mothid == 211 ||
335  mothid == 321 ||
336  mothid == 2212 ||
337  mothid == 10213) {
338  isRadiationfromFinalStateChargedParticle = true;
339  }
340 
341  // check if the gamma from ChargedRho
342  bool isRadiationFromChargedRho = false;
343  if (mothid == 213) {
344  int chg = getRecursiveMotherCharge(mother);
345  if (chg < 0 && isChargedRhoFromTauMinusFirst) {
346  isChargedRhoFromTauMinusFirst = false;
347  isRadiationFromChargedRho = true;
348  }
349  if (chg > 0 && isChargedRhoFromTauPlusFirst) {
350  isChargedRhoFromTauPlusFirst = false;
351  isRadiationFromChargedRho = true;
352  }
353  }
354 
355  // check if the gamma from ChargedA1
356  bool isRadiationFromChargedA1 = false;
357  if (mothid == 20213) {
358  int chg = getRecursiveMotherCharge(mother);
359  if (chg < 0 && isChargedA1FromTauMinusFirst) {
360  isChargedA1FromTauMinusFirst = false;
361  isRadiationFromChargedA1 = true;
362  }
363  if (chg > 0 && isChargedA1FromTauPlusFirst) {
364  isChargedA1FromTauPlusFirst = false;
365  isRadiationFromChargedA1 = true;
366  }
367  }
368 
369  // check if the gamma comes from intermediate W+- boson
370  bool isRadiationfromIntermediateWBoson = false;
371  if (mothid == 24) isRadiationfromIntermediateWBoson = true;
372 
373  // check if it is a tau- -> pi- omega nu, omega -> pi0 gamma decay
374  // Note: TauolaBelle2 generator treats this a coherent production
375  // e.g. includes omega in the form factor but not as an explicit final state particle
376  bool isPiPizGam = false;
377  if (isRadiationfromIntermediateWBoson) {
378  if (p.get4Vector().E() > 0.050) { // 50 MeV threshold
379  const vector<MCParticle*> daughters = mother->getDaughters();
380  int nPiSisters = 0;
381  int nPizSisters = 0;
382  int nTotSisters = 0;
383  int nOtherSisters = 0;
384  for (MCParticle* d : daughters) {
385  if (!d->hasStatus(MCParticle::c_PrimaryParticle)) continue;
386  nTotSisters++;
387  if (abs(d->getPDG()) == 211) {
388  nPiSisters++;
389  } else if (abs(d->getPDG()) == 111) {
390  nPizSisters++;
391  } else if (abs(d->getPDG()) != 22) {
392  nOtherSisters++;
393  }
394  }
395  // allow final state radiation from the tau lepton, but ignore information on number of photons for decay mode classifiction
396  if (nTotSisters >= 3 && nPiSisters == 1 && nPizSisters == 1 && nOtherSisters == 0) {
397  int chg = getRecursiveMotherCharge(mother);
398  if (chg < 0 && isPiPizGamTauMinusFirst) {
399  isPiPizGamTauMinusFirst = false;
400  isPiPizGam = true;
401  }
402  if (chg > 0 && isPiPizGamTauPlusFirst) {
403  isPiPizGamTauPlusFirst = false;
404  isPiPizGam = true;
405  }
406  }
407  }
408  }
409 
410  // check if the gamma comes from tau
411  bool isRadiationfromTau = false;
412  if (mothid == 15) isRadiationfromTau = true;
413 
414  // check if the gamma comes from 2 body LFV decays of tau, e.g. tau- -> e-/mu- gamma with arbitrary number of extra photon radiations from PHOTOS/FSR
415  bool isLFVTau2BodyDecay = false;
416  if (isRadiationfromTau) {
417  bool hasNeutrinoAsSister = false;
418  int numChargedSister = 0;
419  int numNeutralNonNeutrinoNonPhotonSister = 0;
420  const vector<MCParticle*> daughters = mother->getDaughters();
421  for (MCParticle* d : daughters) {
422  if (!d->hasStatus(MCParticle::c_PrimaryParticle)) continue;
423  hasNeutrinoAsSister = find(begin(Neutrinos), end(Neutrinos), abs(d->getPDG())) != end(Neutrinos);
424  if (hasNeutrinoAsSister) break;
425  }
426  if (!hasNeutrinoAsSister) {
427  for (MCParticle* d : daughters) {
428  if (!d->hasStatus(MCParticle::c_PrimaryParticle)) continue;
429  bool isChargedFinalState = find(begin(finalStatePDGs), end(finalStatePDGs), abs(d->getPDG())) != end(finalStatePDGs);
430  if (isChargedFinalState) {
431  numChargedSister++;
432  } else if (d->getPDG() != 22) {
433  numNeutralNonNeutrinoNonPhotonSister++;
434  }
435  }
436  if (numChargedSister == 1 && numNeutralNonNeutrinoNonPhotonSister == 0) {
437  if (mother->getPDG() == 15 && isLFVTauMinus2BodyDecayFirst) {
438  isLFVTauMinus2BodyDecayFirst = false;
439  isLFVTau2BodyDecay = true;
440  }
441  if (mother->getPDG() == -15 && isLFVTauPlus2BodyDecayFirst) {
442  isLFVTauPlus2BodyDecayFirst = false;
443  isLFVTau2BodyDecay = true;
444  }
445  }
446  }
447  B2DEBUG(1, "hasNeutrinoAsSister = " << hasNeutrinoAsSister
448  << " numChargedSister = " << numChargedSister
449  << " numNeutralNonNeutrinoNonPhotonSister = " << numNeutralNonNeutrinoNonPhotonSister
450  << " isLFVTau2BodyDecay = " << isLFVTau2BodyDecay);
451  }
452 
453  bool isPi0GG = false;
454  bool isEtaGG = false;
455  bool isEtpGG = false;
456  bool isPi0GEE = false;
457  bool isEtaPPG = false;
458  bool isOmPizG = false;
459  if (mothid == 111 || mothid == 221 || mothid == 331 || mothid == 223) {
460  const vector<MCParticle*> daughters = mother->getDaughters();
461  int numberofTotalDaughters = 0;
462  int numberOfPhotonDaughters = 0;
463  int numberOfElectronDaughters = 0;
464  int numberOfPionDaughters = 0;
465  int numberOfPizDaughters = 0;
466  for (MCParticle* d : daughters) {
467  if (!d->hasStatus(MCParticle::c_PrimaryParticle)) continue;
468  numberofTotalDaughters ++;
469  if (abs(d->getPDG()) == 22) numberOfPhotonDaughters++;
470  if (abs(d->getPDG()) == 11) numberOfElectronDaughters++;
471  if (abs(d->getPDG()) == 211) numberOfPionDaughters++;
472  if (abs(d->getPDG()) == 111) numberOfPizDaughters++;
473  }
474  if (numberofTotalDaughters == 2 && numberOfPhotonDaughters == 2) {
475  if (mothid == 111) isPi0GG = true;
476  if (mothid == 221) isEtaGG = true;
477  if (mothid == 331) isEtpGG = true;
478  }
479  if (numberofTotalDaughters >= 3 && numberOfPhotonDaughters >= 1 && numberOfElectronDaughters == 2 && numberOfPionDaughters == 0
480  && numberOfPizDaughters == 0) {
481  if (mothid == 111) isPi0GEE = true;
482  }
483  if (numberofTotalDaughters >= 3 && numberOfPhotonDaughters >= 1 && numberOfPizDaughters == 0 && numberOfPionDaughters == 2) {
484  if (mothid == 221) {
485  int chg = getRecursiveMotherCharge(mother);
486  if (chg < 0 && isEtaPPGFromTauMinusFirst) {
487  isEtaPPGFromTauMinusFirst = false;
488  isEtaPPG = true;
489  }
490  if (chg > 0 && isEtaPPGFromTauPlusFirst) {
491  isEtaPPGFromTauPlusFirst = false;
492  isEtaPPG = true;
493  }
494  }
495  }
496  if (numberofTotalDaughters >= 2 && numberOfPhotonDaughters >= 1 && numberOfPizDaughters == 1 && numberOfPionDaughters == 0) {
497  if (mothid == 223) {
498  int chg = getRecursiveMotherCharge(mother);
499  if (chg < 0 && isOmegaPizGamFromTauMinusFirst) {
500  isOmegaPizGamFromTauMinusFirst = false;
501  isOmPizG = true;
502  }
503  if (chg > 0 && isOmegaPizGamFromTauPlusFirst) {
504  isOmegaPizGamFromTauPlusFirst = false;
505  isOmPizG = true;
506  }
507  }
508  }
509  }
510 
511  B2DEBUG(1, "isRadiationfromFinalStateChargedParticle = " << isRadiationfromFinalStateChargedParticle);
512  B2DEBUG(1, "isRadiationFromChargedRho = " << isRadiationFromChargedRho);
513  B2DEBUG(1, "isRadiationFromChargedA1 = " << isRadiationFromChargedA1);
514  B2DEBUG(1, "isRadiationfromIntermediateWBoson = " << isRadiationfromIntermediateWBoson << " isPiPizGam = " << isPiPizGam);
515  B2DEBUG(1, "isRadiationfromTau = " << isRadiationfromTau << " isLFVTau2BodyDecay = " << isLFVTau2BodyDecay);
516  B2DEBUG(1, "isPi0GG = " << isPi0GG << " isEtaGG = " << isEtaGG << " isEtpGG = " << isEtpGG << " isPi0GEE = " << isPi0GEE);
517  B2DEBUG(1, "isEtaPPG = " << isEtaPPG << " isOmPizG = " << isOmPizG);
518 
519  // accept photons if (isRadiationfromFinalStateChargedParticle is false) or
520  // if (isRadiationfromIntermediateWBoson is false) or
521  // if (isRadiationfromTau is true) {gamma is from 2 body LFV decays of tau} or
522  // if the radiation is coming from any other decay [except pi0 -> gamma gamma, eta-> gamma gamma, eta' -> gamma gamma]
523  if (isRadiationfromFinalStateChargedParticle) {
524  } else if (isRadiationFromChargedRho) {
525  accept_photon = true;
526  } else if (isRadiationFromChargedA1) {
527  accept_photon = true;
528  } else if (isRadiationfromIntermediateWBoson) {
529  if (isPiPizGam) {
530  accept_photon = true;
531  }
532  } else if (isRadiationfromTau) { // accept one photon from tau -> (charged particle) + gamma [no neutrinos]
533  if (isLFVTau2BodyDecay) {
534  accept_photon = true;
535  }
536  } else if (isPi0GG) {
537  } else if (isEtaGG) {
538  } else if (isEtpGG) {
539  } else if (isPi0GEE) {
540  } else if (isEtaPPG) {
541  accept_photon = true;
542  } else if (isOmPizG) {
543  accept_photon = true;
544  }
545  }
546 
547  // Without further analysis, it is NOT possible to separate
548  // tau- -> pi- 2pi0 eta (-> pi- pi+ pi0) nu decays [Mode 39] from
549  // tau- -> 2pi- pi+ eta (-> pi0 pi0 pi0) nu decays [Mode 42]
550 
551  if (pdgid == 111 && (isEtaPizPizPizFromTauMinusFirst || isEtaPizPizPizFromTauPlusFirst)) {
552  const MCParticle* mother = p.getMother();
553  // In some low multiplicity generators there may be no mother
554  if (mother and (mother->getPDG() == 221)) { // eta -> pi0 pi0 pi0
555  const vector<MCParticle*> daughters = mother->getDaughters();
556  int nPizSisters = 0;
557  for (MCParticle* d : daughters) {
558  if (!d->hasStatus(MCParticle::c_PrimaryParticle)) continue;
559  if (d->getPDG() == 111) nPizSisters++;
560  }
561  B2DEBUG(1, "nPizSisters = " << nPizSisters);
562  if (nPizSisters == 3) {
563  int chg = getRecursiveMotherCharge(mother);
564  if (chg < 0 && isEtaPizPizPizFromTauMinusFirst) {
565  isEtaPizPizPizFromTauMinusFirst = false;
567  }
568  if (chg > 0 && isEtaPizPizPizFromTauPlusFirst) {
569  isEtaPizPizPizFromTauPlusFirst = false;
571  }
572  }
573  }
574  }
575  B2DEBUG(1,
576  "isEtaPizPizPizFromTauMinusFirst = " << isEtaPizPizPizFromTauMinusFirst << " "
577  "m_isEtaPizPizPizFromTauMinus = " << m_isEtaPizPizPizFromTauMinus << " "
578  "isEtaPizPizPizFromTauPlusFirst = " << isEtaPizPizPizFromTauPlusFirst << " "
579  "m_isEtaPizPizPizFromTauPlus = " << m_isEtaPizPizPizFromTauPlus
580  );
581 
582  // Without further analysis, it is NOT possible to separate
583  // tau- -> pi- 2pi0 omega (-> pi- pi+) nu decays [Mode 49] from
584  // tau- -> 2pi- pi+ 2pi0 nu decays [Mode 66]
585  // Note: TauolaBelle2 treats Mode 66 is coherent production,
586  // e.g. includes omega in the form factor but not as an explicit final state particle.
587  // Note2: omega is explicitly included in following mode:
588  // tau- -> pi- pi0 omega (-> pi- pi+ pi0) nu decays [Mode 130]
589  // which is where Mode 49 is mapped to if there is no omega->pi-pi+ decay
590 
591  // Same confusion can also happen for
592  // tau- -> pi- pi0 omega (-> pi- pi+) nu decays [Mode 131]
593  // tau- -> pi- omega (-> pi- pi+ pi0) nu decays [Mode 236]
594 
595  if (pdgid == -211 && (isOmegaPimPipFromTauMinusFirst || isOmegaPimPipFromTauPlusFirst)) {
596  const MCParticle* mother = p.getMother();
597  // In some low multiplicity generators there may be no mother
598  if (mother and (mother->getPDG() == 223)) { // omega -> pi- pi+
599  const vector<MCParticle*> daughters = mother->getDaughters();
600  int nOmegaDaughters = 0;
601  int nPimSisters = 0;
602  int nPipSisters = 0;
603  int nPizSisters = 0;
604  for (MCParticle* d : daughters) {
605  if (!d->hasStatus(MCParticle::c_PrimaryParticle)) continue;
606  nOmegaDaughters++;
607  if (d->getPDG() == -211) nPimSisters++;
608  if (d->getPDG() == 211) nPipSisters++;
609  if (d->getPDG() == 111) nPizSisters++;
610  }
611  B2DEBUG(1,
612  "nOmegaDaughters = " << nOmegaDaughters << " "
613  "nPimSisters = " << nPimSisters << " "
614  "nPipSisters = " << nPipSisters << " "
615  "nPizSisters = " << nPizSisters);
616  if (nOmegaDaughters >= 2 && nPimSisters == 1 && nPipSisters == 1 && nPizSisters == 0) { // allow omega->pi-pi+gama
617  int chg = getRecursiveMotherCharge(mother);
618  if (chg < 0 && isOmegaPimPipFromTauMinusFirst) {
619  isOmegaPimPipFromTauMinusFirst = false;
621  }
622  if (chg > 0 && isOmegaPimPipFromTauPlusFirst) {
623  isOmegaPimPipFromTauPlusFirst = false;
625  }
626  }
627  }
628  }
629  B2DEBUG(1,
630  "isOmegaPimPipFromTauMinusFirst = " << isOmegaPimPipFromTauMinusFirst << " "
631  "m_isOmegaPimPipFromTauMinus = " << m_isOmegaPimPipFromTauMinus << " "
632  "isOmegaPimPipFromTauPlusFirst = " << isOmegaPimPipFromTauPlusFirst << " "
633  "m_isOmegaPimPipFromTauPlus = " << m_isEtaPizPizPizFromTauPlus
634  );
635 
636  // Fill up all the vector of particles
637  map<int, std::vector<int>>::iterator ite ;
638  for (ite = map_vec.begin(); ite != map_vec.end(); ++ite) {
639  if (pdgid == ite->first) {
640  if (pdgid == 22) {
641  if (accept_photon) {
642  B2DEBUG(1, "Photon accepted");
643  ite-> second.push_back(i);
644  }
645  } else {
646  ite-> second.push_back(i);
647  }
648  break;
649  }
650  }
651 
652  } // End of loop over MCParticles
653 
654  vec_dau_tauminus.clear();
655  vec_dau_tauplus.clear();
656 
657  map<int, std::vector<int>>::iterator itr ;
658  for (itr = map_vec.begin(); itr != map_vec.end(); ++itr) {
659  for (unsigned int i = 0; i < itr-> second.size(); i++) {
660  int ii = itr-> second[i];
661  int chg = getRecursiveMotherCharge(MCParticles[ii]);
662  if (chg < 0) vec_dau_tauminus.push_back(ii);
663  if (chg > 0) vec_dau_tauplus.push_back(ii);
664  }
665  }
666 
668  std::string pdgname;
669 
670  //make decay string for tau-
671  m_tauminusdecaymode = "";
672  for (unsigned iorder = 0; iorder < 46; ++iorder) {
673  int ii = OrderedList[iorder];
674  //
675  for (unsigned int i = 0; i < vec_dau_tauminus.size(); i++) {
677  int pdg = p->getPDG();
678  if (pdg == -130) pdg = 130; // Strange Feature in TauolaBelle2
679  if (pdg != ii) continue;
680  m_tauminusdecaymode.append(".");
681  if (pdg == 94144) {
682  pdgname = "alpha";
683  } else {
684  pdgname = databasePDG->GetParticle(pdg)->GetName();
685  }
686  m_tauminusdecaymode.append(pdgname);
687  }
688  }
689  //
691 
692  //make decay string for tau+
693  m_tauplusdecaymode = "";
694  for (unsigned iorder = 0; iorder < 46; ++iorder) {
695  int ii = OrderedList[iorder];
696  //
697  for (unsigned int i = 0; i < vec_dau_tauplus.size(); i++) {
699  int pdg = p->getPDG();
700  if (pdg == -130) pdg = 130; // Strange Feature in TauolaBelle2
701  if (pdg != ii) continue;
702  m_tauplusdecaymode.append(".");
703  if (pdg == 94144) {
704  pdgname = "alpha";
705  } else {
706  pdgname = databasePDG->GetParticle(pdg)->GetName();
707  }
708  m_tauplusdecaymode.append(pdgname);
709  }
710  }
711  //
713 
714 }
715 
716 //
717 int TauDecayModeModule::TauolaBelle2DecayMode(const std::string& state, int chg)
718 {
719  std::map<std::string, int> mode_decay = (chg < 0) ? mode_decay_minus : mode_decay_plus;
720  map<std::string, int>::iterator itr ;
721  for (itr = mode_decay.begin(); itr != mode_decay.end(); ++itr) {
722  if (state == itr-> first) {
723  int mode = itr-> second;
724  if (mode == 39) {
725  if (chg < 0 && m_isEtaPizPizPizFromTauMinus) mode = 42;
726  if (chg > 0 && m_isEtaPizPizPizFromTauPlus) mode = 42;
727  }
728  if (mode == 49) {
729  if (chg < 0 && !m_isOmegaPimPipFromTauMinus) mode = 130;
730  if (chg > 0 && !m_isOmegaPimPipFromTauPlus) mode = 130;
731  }
732  if (mode == 131) {
733  if (chg < 0 && !m_isOmegaPimPipFromTauMinus) mode = 236;
734  if (chg > 0 && !m_isOmegaPimPipFromTauPlus) mode = 236;
735  }
736  if (mode == 247) {
737  if (chg < 0 && !m_isEtaPizPizPizFromTauMinus) mode = 15;
738  if (chg > 0 && !m_isEtaPizPizPizFromTauPlus) mode = 15;
739  }
740  return mode;
741  }
742  }
743  return -1;
744 }
745 
746 //
748 {
749  const MCParticle* mother = p->getMother();
750  if (mother == nullptr) {
751  return 0;
752  } else if (abs(p->getPDG()) == 11 && mother->getPDG() == 111) { // pi0 -> e-e+ gamma
753  return 0;
754  } else if (abs(p->getPDG()) == 11 && mother->getPDG() == 221) { // eta -> e-e+ gamma
755  return 0;
756  } else if (abs(p->getPDG()) == 11 && mother->getPDG() == 113) { // rho0 -> e-e+
757  return 0;
758  } else if (abs(p->getPDG()) == 11 && mother->getPDG() == 223) { // omega -> e- e+
759  return 0;
760  } else if (abs(p->getPDG()) == 11 && mother->getPDG() == 333) { // phi -> e- e+
761  return 0;
762  } else if (abs(p->getPDG()) == 13 && mother->getPDG() == 221) { // eta -> mu-mu+ gamma
763  return 0;
764  } else if (abs(p->getPDG()) == 13 && mother->getPDG() == 113) { // rho0 -> mu-mu+
765  return 0;
766  } else if (abs(p->getPDG()) == 13 && mother->getPDG() == 333) { // phi -> mu-mu+
767  return 0;
768  } else if (mother->getPDG() == 15) {
769  return -1;
770  } else if (mother->getPDG() == -15) {
771  return 1;
772  } else {
773  return getRecursiveMotherCharge(mother);
774  }
775 }
776 
777 //
779 {
780  numOfTauPlus = 0;
781  numOfTauMinus = 0;
782  idOfTauPlus = 0;
783  idOfTauMinus = 0;
784  for (int i = 0; i < MCParticles.getEntries(); i++) {
785  MCParticle& p = *MCParticles[i];
786 
787  if (p.getStatus() == 1 && p.getPDG() == 15) {
788  numOfTauMinus++;
789  idOfTauMinus = p.getIndex();
790  }
791  if (p.getStatus() == 1 && p.getPDG() == -15) {
792  numOfTauPlus++;
793  idOfTauPlus = p.getIndex();
794  }
795  }
796  if (numOfTauPlus == 1 && numOfTauMinus == 1) {
797  tauPair = true;
798  } else tauPair = false;
799 }
800 
801 //
803 {
804  int ret = 0;
805  const vector<MCParticle*> daughters = p.getDaughters();
806  if (daughters.empty()) return ret;
807  for (MCParticle* d : daughters) {
808  if (!d->hasStatus(MCParticle::c_PrimaryParticle)) continue;
809  // TODO: Improve how to identify a final state particle.
810  bool isChargedFinalState = find(begin(finalStatePDGs),
811  end(finalStatePDGs),
812  abs(d->getPDG())) != end(finalStatePDGs);
813  if (isChargedFinalState) ret++;
814  else ret += getProngOfDecay(*d);
815  }
816  return ret;
817 }
int getPDGCode() const
PDG code.
Definition: Const.h:464
static const ChargedStable muon
muon particle
Definition: Const.h:651
static const ParticleType Klong
K^0_L particle.
Definition: Const.h:669
static const ParticleType photon
photon particle
Definition: Const.h:664
static const ChargedStable electron
electron particle
Definition: Const.h:650
Replacement for TDatabasePDG that is filled from EvtGen's evt.pdl.
static EvtGenDatabasePDG * Instance()
Instance method that loads the EvtGen table.
A Class to store the Monte Carlo particle information.
Definition: MCParticle.h:32
@ c_PrimaryParticle
bit 0: Particle is primary particle.
Definition: MCParticle.h:47
std::vector< Belle2::MCParticle * > getDaughters() const
Get vector of all daughter particles, empty vector if none.
Definition: MCParticle.cc:52
int getPDG() const
Return PDG code of particle.
Definition: MCParticle.h:112
Base class for Modules.
Definition: Module.h:72
void setDescription(const std::string &description)
Sets the description of the module.
Definition: Module.cc:214
std::vector< int > vec_numu
Variable name of the vector where particles identified in the event are stored.
std::vector< int > vec_em
Variable name of the vector where particles identified in the event are stored.
std::vector< int > vec_omega
Variable name of the vector where particles identified in the event are stored.
std::vector< int > vec_k0s
Variable name of the vector where particles identified in the event are stored.
Int_t m_mprong
Prong of the decay channel of tau-.
std::vector< int > vec_b1p
Variable name of the vector where particles identified in the event are stored.
std::vector< int > vec_f1
Variable name of the vector where particles identified in the event are stored.
int numOfTauPlus
Number of tau+ in the event.
Int_t m_pprong
Prong of the decay channel of tau+.
StoreObjPtr< EventMetaData > m_event_metadata
event number
void IdentifyTauPair()
Identifies if the event is a generated tau pair.
std::vector< int > vec_apro
Variable name of the vector where particles identified in the event are stored.
std::vector< int > vec_pi0
Variable name of the vector where particles identified in the event are stored.
std::vector< int > vec_alpha
Variable name of the vector where particles identified in the event are stored.
StoreArray< MCParticle > MCParticles
StoreArray of MCParticles.
std::vector< int > vec_anue
Variable name of the vector where particles identified in the event are stored.
std::vector< int > vec_nue
Variable name of the vector where particles identified in the event are stored.
virtual void initialize() override
Initializes the module.
std::vector< int > vec_a0p_980
Variable name of the vector where particles identified in the event are stored.
std::string m_file_plus
Alternative mapping for tau+.
std::vector< int > vec_a0m_1450
Variable name of the vector where particles identified in the event are stored.
virtual void event() override
Method is called for each event.
bool m_isEtaPizPizPizFromTauMinus
Flag for eta->pi0pi0pi0 decays from tau-.
std::vector< int > vec_lmb_br
Variable name of the vector where particles identified in the event are stored.
Int_t m_mmode
ID of the decay channel of tau-.
void AnalyzeTauPairEvent()
Analyze a generated tau pair event.
bool m_isOmegaPimPipFromTauMinus
Flag for omega->pi-pi+ decays from tau-.
int getRecursiveMotherCharge(const MCParticle *mc)
Identifies particles coming from tau decays.
std::vector< int > vec_phi
Variable name of the vector where particles identified in the event are stored.
static constexpr int Neutrinos[3]
PDG codes of neutrinos in final state particles in generation: {nu_e, nu_mu, mu_tau}.
int m_taum_no
number of tau- unclassified events
std::string m_tauminusdecaymode
Variable name for the decay mode of the tau-.
std::vector< int > vec_a1p
Variable name of the vector where particles identified in the event are stored.
bool m_isOmegaPimPipFromTauPlus
Flag for omega->pi-pi+ decays from tau+.
bool tauPair
Boolean variable used to identify tau event.
int TauolaBelle2DecayMode(const std::string &s, int chg)
Classifies the decays of the event and assigns a decay mode.
int idOfTauMinus
Index of the generated tau-.
std::vector< int > vec_lambda
Variable name of the vector where particles identified in the event are stored.
std::vector< int > vec_anut
Variable name of the vector where particles identified in the event are stored.
std::vector< int > vec_f0
Variable name of the vector where particles identified in the event are stored.
std::vector< int > vec_mum
Variable name of the vector where particles identified in the event are stored.
Int_t m_pmode
ID of the decay channel of tau+.
static constexpr int OrderedList[46]
PDG codes of ORDERED particles.
int numOfTauMinus
Number of tau- in the event.
std::vector< int > vec_nut
Variable name of the vector where particles identified in the event are stored.
std::vector< int > vec_kstar0_br
Variable name of the vector where particles identified in the event are stored.
std::vector< int > vec_a00_1450
Variable name of the vector where particles identified in the event are stored.
std::vector< int > vec_kstar0
Variable name of the vector where particles identified in the event are stored.
std::vector< int > vec_a0m_980
Variable name of the vector where particles identified in the event are stored.
std::vector< int > vec_a00_980
Variable name of the vector where particles identified in the event are stored.
int getProngOfDecay(const MCParticle &mc)
Identifies the number of charged final state particles in the decay.
std::vector< int > vec_a1m
Variable name of the vector where particles identified in the event are stored.
int idOfTauPlus
Index of the generated tau+.
StoreObjPtr< TauPairDecay > m_tauDecay
pointer to tau pair decay objects
std::vector< int > vec_rhop
Variable name of the vector where particles identified in the event are stored.
std::string m_printmode
Parameter passed by the user to indicated the informationt to be printed.
std::vector< int > vec_pro
Variable name of the vector where particles identified in the event are stored.
bool m_isEtaPizPizPizFromTauPlus
Flag for eta->pi0pi0pi0 decays from tau+.
std::string m_tauplusdecaymode
Variable name for the decay mode of the tau+.
std::vector< int > vec_pim
Variable name of the vector where particles identified in the event are stored.
std::vector< int > vec_mup
Variable name of the vector where particles identified in the event are stored.
std::vector< int > vec_pip
Variable name of the vector where particles identified in the event are stored.
std::vector< int > vec_kstarp
Variable name of the vector where particles identified in the event are stored.
std::vector< int > vec_kstarm
Variable name of the vector where particles identified in the event are stored.
std::vector< int > vec_etapr
Variable name of the vector where particles identified in the event are stored.
std::vector< int > vec_ep
Variable name of the vector where particles identified in the event are stored.
std::vector< int > vec_k0l
Variable name of the vector where particles identified in the event are stored.
static constexpr int finalStatePDGs[5]
PDG codes accepted as charged final state particles in generation: {e, mu, pi, K, p}.
std::vector< int > vec_eta
Variable name of the vector where particles identified in the event are stored.
std::vector< int > vec_km
Variable name of the vector where particles identified in the event are stored.
std::vector< int > vec_anumu
Variable name of the vector where particles identified in the event are stored.
std::vector< int > vec_dau_tauplus
Variable name of the vector where particles identified in the event are stored.
std::vector< int > vec_rhom
Variable name of the vector where particles identified in the event are stored.
std::vector< int > vec_gam
Variable name of the vector where particles identified in the event are stored.
std::string m_file_minus
Alternative mapping for tau-.
int m_taup_no
number of tau+ unclassified events
std::vector< int > vec_dau_tauminus
Variable name of the vector where particles identified in the event are stored.
std::vector< int > vec_kp
Variable name of the vector where particles identified in the event are stored.
std::vector< int > vec_b1m
Variable name of the vector where particles identified in the event are stored.
std::vector< int > vec_rho0
Variable name of the vector where particles identified in the event are stored.
std::map< std::string, int > mode_decay_minus
Mapping for tau- decays.
std::map< std::string, int > mode_decay_plus
Mapping for tau+ decays.
std::vector< int > vec_a0p_1450
Variable name of the vector where particles identified in the event are stored.
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
#define REG_MODULE(moduleName)
Register the given module (without 'Module' suffix) with the framework.
Definition: Module.h:650
Abstract base class for different kinds of events.
Definition: ClusterUtils.h:24