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MaterialBudgetData.cc
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2 
3 #include "G4Step.hh"
4 #include "G4Material.hh"
5 #include "G4EventManager.hh"
6 #include "G4Event.hh"
7 
9  //instantiate categorizer to assign an ID to volumes and materials
11  allStepsToTree = false;
12  isHGCal = false;
13  isMtd = false;
14  densityConvertionFactor = 6.24E18;
15 }
16 
18 
20 
21 void MaterialBudgetData::dataStartTrack(const G4Track* aTrack) {
22  const G4ThreeVector& dir = aTrack->GetMomentum();
23 
24  if (myMaterialBudgetCategorizer == nullptr) {
25  if (isHGCal) {
26  myMaterialBudgetCategorizer = std::make_unique<MaterialBudgetCategorizer>("HGCal");
27  } else if (isMtd) {
28  myMaterialBudgetCategorizer = std::make_unique<MaterialBudgetCategorizer>("Mtd");
29  } else {
30  myMaterialBudgetCategorizer = std::make_unique<MaterialBudgetCategorizer>("Tracker");
31  }
32  }
33 
34  theStepN = 0;
35  theTotalMB = 0;
36  theTotalIL = 0;
37  theEta = 0;
38  thePhi = 0;
39  theID = 0;
40  thePt = 0;
41  theEnergy = 0;
42  theMass = 0;
43 
44  theSupportMB = 0.f;
45  theSensitiveMB = 0.f;
46  theCoolingMB = 0.f;
47  theElectronicsMB = 0.f;
48  theOtherMB = 0.f;
49 
50  //HGCal
51  theAirMB = 0.f;
52  theCablesMB = 0.f;
53  theCopperMB = 0.f;
54  theH_ScintillatorMB = 0.f;
55  theLeadMB = 0.f;
56  theEpoxyMB = 0.f;
57  theKaptonMB = 0.f;
58  theAluminiumMB = 0.f;
59  theHGC_G10_FR4MB = 0.f;
60  theSiliconMB = 0.f;
61  theStainlessSteelMB = 0.f;
62  theWCuMB = 0.f;
63 
64  theSupportIL = 0.f;
65  theSensitiveIL = 0.f;
66  theCoolingIL = 0.f;
67  theElectronicsIL = 0.f;
68  theOtherIL = 0.f;
69 
70  //HGCal
71  theAirIL = 0.f;
72  theCablesIL = 0.f;
73  theCopperIL = 0.f;
74  theH_ScintillatorIL = 0.f;
75  theLeadIL = 0.f;
76  theEpoxyIL = 0.f;
77  theKaptonIL = 0.f;
78  theAluminiumIL = 0.f;
79  theHGC_G10_FR4IL = 0.f;
80  theSiliconIL = 0.f;
81  theStainlessSteelIL = 0.f;
82  theWCuIL = 0.f;
83 
88  theOtherFractionMB = 0.f;
89  //HGCal
90  theAirFractionMB = 0.f;
91  theCablesFractionMB = 0.f;
92  theCopperFractionMB = 0.f;
94  theLeadFractionMB = 0.f;
95  theEpoxyFractionMB = 0.f;
96  theKaptonFractionMB = 0.f;
101  theWCuFractionMB = 0.f;
102 
103  theSupportFractionIL = 0.f;
105  theCoolingFractionIL = 0.f;
107  theOtherFractionIL = 0.f;
108  //HGCal
109  theAirFractionIL = 0.f;
110  theCablesFractionIL = 0.f;
111  theCopperFractionIL = 0.f;
113  theLeadFractionIL = 0.f;
114  theEpoxyFractionIL = 0.f;
115  theKaptonFractionIL = 0.f;
118  theSiliconFractionIL = 0.f;
120  theWCuFractionIL = 0.f;
121 
122  theID = (int)(aTrack->GetDefinition()->GetPDGEncoding());
123  thePt = dir.perp();
124  if (dir.theta() != 0) {
125  theEta = dir.eta();
126  } else {
127  theEta = -99;
128  }
129  thePhi = dir.phi();
130  theEnergy = aTrack->GetTotalEnergy();
131  theMass = aTrack->GetDefinition()->GetPDGMass();
132 }
133 
134 void MaterialBudgetData::dataEndTrack(const G4Track* aTrack) {
135  LogDebug("MaterialBudget") << "MaterialBudgetData: [OVAL] MaterialBudget "
136  << G4EventManager::GetEventManager()->GetConstCurrentEvent()->GetEventID()
137  << " Eta:" << theEta << " Phi:" << thePhi << " TotalMB" << theTotalMB;
138 
139  LogDebug("MaterialBudget") << "MaterialBudgetData:" << theStepN << "Recorded steps ";
140 
141  if (!isHGCal) {
142  LogDebug("Material Budget") << "MaterialBudgetData: Radiation Length "
143  << G4EventManager::GetEventManager()->GetConstCurrentEvent()->GetEventID() << " Eta"
144  << theEta << " Phi" << thePhi << " TotalMB" << theTotalMB << " SUP " << theSupportMB
145  << " SEN " << theSensitiveMB << " CAB " << theCablesMB << " COL " << theCoolingMB
146  << " ELE " << theElectronicsMB << " other " << theOtherMB << " Air " << theAirMB;
147 
148  LogDebug("Material Budget") << "MaterialBudgetData: Interaction Length "
149  << G4EventManager::GetEventManager()->GetConstCurrentEvent()->GetEventID() << " Eta "
150  << theEta << " Phi " << thePhi << " TotalIL " << theTotalIL << " SUP " << theSupportIL
151  << " SEN " << theSensitiveIL << " CAB " << theCablesIL << " COL " << theCoolingIL
152  << " ELE " << theElectronicsIL << " other " << theOtherIL << " Air " << theAirIL
153  << std::endl;
154 
155  } else {
156  LogDebug("MaterialBudget") << "MaterialBudgetData: HGCal Material Budget: Radiation Length "
157  << G4EventManager::GetEventManager()->GetConstCurrentEvent()->GetEventID() << " Eta "
158  << theEta << " Phi " << thePhi << " TotaLMB" << theTotalMB << " theCopperMB "
159  << theCopperMB << " theH_ScintillatorMB " << theH_ScintillatorMB << " CAB "
160  << theCablesMB << " theLeadMB " << theLeadMB << " theEpoxyMB " << theEpoxyMB
161  << " theKaptonMB " << theKaptonMB << " theAluminiumMB " << theAluminiumMB
162  << " theHGC_G10_FR4MB " << theHGC_G10_FR4MB << " theSiliconMB " << theSiliconMB
163  << " theAirMB " << theAirMB << " theStainlessSteelMB " << theStainlessSteelMB
164  << " theWCuMB " << theWCuMB;
165 
166  LogDebug("MaterialBudget") << "MaterialBudgetData: HGCal Material Budget: Interaction Length "
167  << G4EventManager::GetEventManager()->GetConstCurrentEvent()->GetEventID() << " Eta "
168  << theEta << " Phi " << thePhi << " TotalIL " << theTotalIL << " theCopperIL "
169  << theCopperIL << " theH_ScintillatorIL " << theH_ScintillatorIL << " CAB "
170  << theCablesIL << " theLeadIL " << theLeadIL << " theEpoxyIL " << theEpoxyIL
171  << " theKaptonIL " << theKaptonIL << " theAluminiumIL " << theAluminiumIL
172  << " theHGC_G10_FR4IL " << theHGC_G10_FR4IL << " theSiliconIL " << theSiliconIL
173  << " Air " << theAirIL << " theStainlessSteelIL " << theStainlessSteelIL << " theWCuIL "
174  << theWCuIL << std::endl;
175  }
176 }
177 
178 void MaterialBudgetData::dataPerStep(const G4Step* aStep) {
179  assert(aStep);
180  G4StepPoint* prePoint = aStep->GetPreStepPoint();
181  G4StepPoint* postPoint = aStep->GetPostStepPoint();
182  assert(prePoint);
183  assert(postPoint);
184  G4Material* theMaterialPre = prePoint->GetMaterial();
185  assert(theMaterialPre);
186 
187  CLHEP::Hep3Vector prePos = prePoint->GetPosition();
188  CLHEP::Hep3Vector postPos = postPoint->GetPosition();
189 
190  G4double steplen = aStep->GetStepLength();
191 
192  G4double radlen = theMaterialPre->GetRadlen();
193  G4double intlen = theMaterialPre->GetNuclearInterLength();
194  G4double density = theMaterialPre->GetDensity() / densityConvertionFactor; // always g/cm3
195 
196  G4String materialName = theMaterialPre->GetName();
197 
198  LogDebug("MaterialBudget") << "MaterialBudgetData: Material " << materialName << " steplen " << steplen << " radlen "
199  << radlen << " mb " << steplen / radlen;
200 
201  G4String volumeName = aStep->GetPreStepPoint()->GetTouchable()->GetVolume(0)->GetLogicalVolume()->GetName();
202 
203  LogDebug("MaterialBudget") << "MaterialBudgetData: Volume " << volumeName << " Material " << materialName;
204 
205  // instantiate the categorizer
207  int volumeID = myMaterialBudgetCategorizer->volume(volumeName);
208  int materialID = myMaterialBudgetCategorizer->material(materialName);
209 
210  LogDebug("MaterialBudget") << "MaterialBudgetData: Volume ID " << volumeID << " Material ID " << materialID;
211 
212  // FIXME: Both volume ID and material ID are zeros, so this part is not executed leaving all
213  // values as zeros.
214 
215  if (!isHGCal) {
216  bool isCtgOk = !myMaterialBudgetCategorizer->x0fraction(materialName).empty() &&
217  !myMaterialBudgetCategorizer->l0fraction(materialName).empty() &&
218  (myMaterialBudgetCategorizer->x0fraction(materialName).size() == 7) /*7 Categories*/
219  && (myMaterialBudgetCategorizer->l0fraction(materialName).size() == 7);
220 
221  if (!isCtgOk) {
222  if (materialName.compare("Air") == 0) {
223  theAirFractionMB = 1.f;
224  theAirFractionIL = 1.f;
225  } else {
226  theOtherFractionMB = 1.f;
227  theOtherFractionIL = 1.f;
228  edm::LogWarning("MaterialBudget") << "MaterialBudgetData: Material forced to 'Other': " << materialName
229  << " in volume " << volumeName << ". Check Categorization.";
230  }
231  } else {
232  theSupportFractionMB = myMaterialBudgetCategorizer->x0fraction(materialName)[0];
233  theSensitiveFractionMB = myMaterialBudgetCategorizer->x0fraction(materialName)[1];
234  theCablesFractionMB = myMaterialBudgetCategorizer->x0fraction(materialName)[2];
235  theCoolingFractionMB = myMaterialBudgetCategorizer->x0fraction(materialName)[3];
236  theElectronicsFractionMB = myMaterialBudgetCategorizer->x0fraction(materialName)[4];
237  theOtherFractionMB = myMaterialBudgetCategorizer->x0fraction(materialName)[5];
238  theAirFractionMB = myMaterialBudgetCategorizer->x0fraction(materialName)[6];
239 
240  if (theOtherFractionMB > 0.f)
241  edm::LogWarning("MaterialBudget")
242  << "MaterialBudgetData: Material found with no category: " << materialName << " in volume " << volumeName;
243 
244  theSupportFractionIL = myMaterialBudgetCategorizer->l0fraction(materialName)[0];
245  theSensitiveFractionIL = myMaterialBudgetCategorizer->l0fraction(materialName)[1];
246  theCablesFractionIL = myMaterialBudgetCategorizer->l0fraction(materialName)[2];
247  theCoolingFractionIL = myMaterialBudgetCategorizer->l0fraction(materialName)[3];
248  theElectronicsFractionIL = myMaterialBudgetCategorizer->l0fraction(materialName)[4];
249  theOtherFractionIL = myMaterialBudgetCategorizer->l0fraction(materialName)[5];
250  theAirFractionIL = myMaterialBudgetCategorizer->l0fraction(materialName)[6];
251 
252  if (theOtherFractionIL > 0.f)
253  edm::LogWarning("MaterialBudget")
254  << "MaterialBudgetData: Material found with no category: " << materialName << " in volume " << volumeName;
255  }
256  } else { // isHGCal
257 
258  bool isHGCalx0fractionEmpty = myMaterialBudgetCategorizer->HGCalx0fraction(materialName).empty();
259  bool isHGCall0fractionEmpty = myMaterialBudgetCategorizer->HGCall0fraction(materialName).empty();
260 
261  if (isHGCalx0fractionEmpty && isHGCall0fractionEmpty) {
262  theOtherFractionMB = 1.f;
263  theOtherFractionIL = 1.f;
264 
265  edm::LogWarning("MaterialBudget") << "MaterialBudgetData: Material forced to 'Other': " << materialName
266  << " in volume " << volumeName;
267  } else {
268  theAirFractionMB = myMaterialBudgetCategorizer->HGCalx0fraction(materialName)[0];
269  theCablesFractionMB = myMaterialBudgetCategorizer->HGCalx0fraction(materialName)[1];
270  theCopperFractionMB = myMaterialBudgetCategorizer->HGCalx0fraction(materialName)[2];
271  theH_ScintillatorFractionMB = myMaterialBudgetCategorizer->HGCalx0fraction(materialName)[3];
272  theLeadFractionMB = myMaterialBudgetCategorizer->HGCalx0fraction(materialName)[4];
273  theHGC_G10_FR4FractionMB = myMaterialBudgetCategorizer->HGCalx0fraction(materialName)[5];
274  theSiliconFractionMB = myMaterialBudgetCategorizer->HGCalx0fraction(materialName)[6];
275  theStainlessSteelFractionMB = myMaterialBudgetCategorizer->HGCalx0fraction(materialName)[7];
276  theWCuFractionMB = myMaterialBudgetCategorizer->HGCalx0fraction(materialName)[8];
277  theOtherFractionMB = myMaterialBudgetCategorizer->HGCalx0fraction(materialName)[9];
278  theEpoxyFractionMB = myMaterialBudgetCategorizer->HGCalx0fraction(materialName)[10];
279  theKaptonFractionMB = myMaterialBudgetCategorizer->HGCalx0fraction(materialName)[11];
280  theAluminiumFractionMB = myMaterialBudgetCategorizer->HGCalx0fraction(materialName)[12];
281 
282  if (theOtherFractionMB != 0)
283  // edm::LogWarning("MaterialBudget") << "MaterialBudgetData: Material found with no category: " << materialName
284  // << " in volume " << volumeName << std::endl;
285  std::cout << "MaterialBudgetData: Material found with no category: " << materialName << " in volume "
286  << volumeName << std::endl;
287 
288  theAirFractionIL = myMaterialBudgetCategorizer->HGCall0fraction(materialName)[0];
289  theCablesFractionIL = myMaterialBudgetCategorizer->HGCall0fraction(materialName)[1];
290  theCopperFractionIL = myMaterialBudgetCategorizer->HGCall0fraction(materialName)[2];
291  theH_ScintillatorFractionIL = myMaterialBudgetCategorizer->HGCall0fraction(materialName)[3];
292  theLeadFractionIL = myMaterialBudgetCategorizer->HGCall0fraction(materialName)[4];
293  theHGC_G10_FR4FractionIL = myMaterialBudgetCategorizer->HGCall0fraction(materialName)[5];
294  theSiliconFractionIL = myMaterialBudgetCategorizer->HGCall0fraction(materialName)[6];
295  theStainlessSteelFractionIL = myMaterialBudgetCategorizer->HGCall0fraction(materialName)[7];
296  theWCuFractionIL = myMaterialBudgetCategorizer->HGCall0fraction(materialName)[8];
297  theOtherFractionIL = myMaterialBudgetCategorizer->HGCall0fraction(materialName)[9];
298  theEpoxyFractionIL = myMaterialBudgetCategorizer->HGCall0fraction(materialName)[10];
299  theKaptonFractionIL = myMaterialBudgetCategorizer->HGCall0fraction(materialName)[11];
300  theAluminiumFractionIL = myMaterialBudgetCategorizer->HGCall0fraction(materialName)[12];
301 
302  if (theOtherFractionIL != 0)
303  edm::LogWarning("MaterialBudget") << "MaterialBudgetData: Material found with no category " << materialName
304  << " in volume " << volumeName << std::endl;
305  }
306  }
307 
308  float dmb = steplen / radlen;
309  float dil = steplen / intlen;
310 
311  G4VPhysicalVolume* pv = aStep->GetPreStepPoint()->GetPhysicalVolume();
312  const G4VTouchable* t = aStep->GetPreStepPoint()->GetTouchable();
313  const G4ThreeVector& objectTranslation = t->GetTranslation();
314  const G4RotationMatrix* objectRotation = t->GetRotation();
315  const G4VProcess* interactionPre = prePoint->GetProcessDefinedStep();
316  const G4VProcess* interactionPost = postPoint->GetProcessDefinedStep();
317 
318  G4Track* track = aStep->GetTrack();
319  if (theStepN == 0)
320  LogDebug("MaterialBudget") << "MaterialBudgetData: Simulated Particle " << theID << "\tMass " << theMass
321  << " MeV/c2"
322  << "\tPt = " << thePt << " MeV/c"
323  << "\tEta = " << theEta << "\tPhi = " << thePhi << "\tEnergy = " << theEnergy << " MeV";
324 
325  //fill data per step
326  if (allStepsToTree) {
328  if (theStepN > MAXNUMBERSTEPS)
329  theStepN = MAXNUMBERSTEPS - 1;
330  theDmb[theStepN] = dmb;
331  theDil[theStepN] = dil;
337  //HGCal
350 
356  //HGCal
369 
370  theInitialX[theStepN] = prePos.x();
371  theInitialY[theStepN] = prePos.y();
372  theInitialZ[theStepN] = prePos.z();
373  theFinalX[theStepN] = postPos.x();
374  theFinalY[theStepN] = postPos.y();
375  theFinalZ[theStepN] = postPos.z();
376  theVolumeID[theStepN] = volumeID;
377  theVolumeName[theStepN] = volumeName;
378  theVolumeCopy[theStepN] = pv->GetCopyNo();
379  theVolumeX[theStepN] = objectTranslation.x();
380  theVolumeY[theStepN] = objectTranslation.y();
381  theVolumeZ[theStepN] = objectTranslation.z();
382  theVolumeXaxis1[theStepN] = objectRotation->xx();
383  theVolumeXaxis2[theStepN] = objectRotation->xy();
384  theVolumeXaxis3[theStepN] = objectRotation->xz();
385  theVolumeYaxis1[theStepN] = objectRotation->yx();
386  theVolumeYaxis2[theStepN] = objectRotation->yy();
387  theVolumeYaxis3[theStepN] = objectRotation->yz();
388  theVolumeZaxis1[theStepN] = objectRotation->zx();
389  theVolumeZaxis2[theStepN] = objectRotation->zy();
390  theVolumeZaxis3[theStepN] = objectRotation->zz();
391  theMaterialID[theStepN] = materialID;
392  theMaterialName[theStepN] = materialName;
393  theMaterialX0[theStepN] = radlen;
394  theMaterialLambda0[theStepN] = intlen;
396  theStepID[theStepN] = track->GetDefinition()->GetPDGEncoding();
397  theStepInitialPt[theStepN] = prePoint->GetMomentum().perp();
398  theStepInitialEta[theStepN] = prePoint->GetMomentum().eta();
399  theStepInitialPhi[theStepN] = prePoint->GetMomentum().phi();
400  theStepInitialEnergy[theStepN] = prePoint->GetTotalEnergy();
401  theStepInitialPx[theStepN] = prePoint->GetMomentum().x();
402  theStepInitialPy[theStepN] = prePoint->GetMomentum().y();
403  theStepInitialPz[theStepN] = prePoint->GetMomentum().z();
404  theStepInitialBeta[theStepN] = prePoint->GetBeta();
405  theStepInitialGamma[theStepN] = prePoint->GetGamma();
406  theStepInitialMass[theStepN] = prePoint->GetMass();
407  theStepFinalPt[theStepN] = postPoint->GetMomentum().perp();
408  theStepFinalEta[theStepN] = postPoint->GetMomentum().eta();
409  theStepFinalPhi[theStepN] = postPoint->GetMomentum().phi();
410  theStepFinalEnergy[theStepN] = postPoint->GetTotalEnergy();
411  theStepFinalPx[theStepN] = postPoint->GetMomentum().x();
412  theStepFinalPy[theStepN] = postPoint->GetMomentum().y();
413  theStepFinalPz[theStepN] = postPoint->GetMomentum().z();
414  theStepFinalBeta[theStepN] = postPoint->GetBeta();
415  theStepFinalGamma[theStepN] = postPoint->GetGamma();
416  theStepFinalMass[theStepN] = postPoint->GetMass();
417  int preProcType = -99;
418  int postProcType = -99;
419  if (interactionPre)
420  preProcType = interactionPre->GetProcessType();
421  theStepPreProcess[theStepN] = preProcType;
422  if (interactionPost)
423  postProcType = interactionPost->GetProcessType();
424  theStepPostProcess[theStepN] = postProcType;
425 
426  LogDebug("MaterialBudget") << "MaterialBudgetData: Step " << theStepN << "\tDelta MB = " << theDmb[theStepN]
427  << std::endl
428  << " Support " << theSupportDmb[theStepN] << " Sensitive " << theSensitiveDmb[theStepN]
429  << " Cables " << theCablesDmb[theStepN] << " Cooling " << theCoolingDmb[theStepN]
430  << " Electronics " << theElectronicsDmb[theStepN] << " Other " << theOtherDmb[theStepN]
431  << " Air " << theAirDmb[theStepN] << std::endl
432  << "\tDelta IL = " << theDil[theStepN] << std::endl
433  << " Support " << theSupportDil[theStepN] << " Sensitive " << theSensitiveDil[theStepN]
434  << " Cables " << theCablesDil[theStepN] << " Cooling " << theCoolingDil[theStepN]
435  << " Electronics " << theElectronicsDil[theStepN] << " Other " << theOtherDil[theStepN]
436  << " Air " << theAirDil[theStepN];
437 
438  if (interactionPre)
439  LogDebug("MaterialBudget") << "MaterialBudgetData: Process Pre " << interactionPre->GetProcessName() << " type "
440  << theStepPreProcess[theStepN] << " name "
441  << interactionPre->GetProcessTypeName(G4ProcessType(theStepPreProcess[theStepN]));
442  if (interactionPost)
443  LogDebug("MaterialBudget")
444  << "MaterialBudgetData: Process Post " << interactionPost->GetProcessName() << " type "
445  << theStepPostProcess[theStepN] << " name "
446  << interactionPost->GetProcessTypeName(G4ProcessType(theStepPostProcess[theStepN]))
447  << " Pre x = " << theInitialX[theStepN] << " y = " << theInitialY[theStepN]
448  << " z = " << theInitialZ[theStepN]
449  << " Polar Radius = " << sqrt(prePos.x() * prePos.x() + prePos.y() * prePos.y())
450  << " Pt = " << theStepInitialPt[theStepN] << " Energy = " << theStepInitialEnergy[theStepN] << " Final: "
451  << " Post x = " << theFinalX[theStepN] << " y = " << theFinalY[theStepN] << " z = " << theFinalZ[theStepN]
452  << " Polar Radius = " << sqrt(postPos.x() * postPos.x() + postPos.y() * postPos.y())
453  << " Pt = " << theStepFinalPt[theStepN] << " Energy = " << theStepFinalEnergy[theStepN] << std::endl
454  << " Volume " << volumeID << " name " << theVolumeName[theStepN] << " copy number " << theVolumeCopy[theStepN]
455  << " material " << theMaterialID[theStepN] << " " << theMaterialName[theStepN]
456  << " Density = " << theMaterialDensity[theStepN] << " g/cm3"
457  << " X0 = " << theMaterialX0[theStepN] << " mm"
458  << " Lambda0 = " << theMaterialLambda0[theStepN] << " mm" << std::endl
459  << " Particle " << theStepID[theStepN] << " Initial Pt = " << theStepInitialPt[theStepN] << " MeV/c"
460  << " eta = " << theStepInitialEta[theStepN] << " phi = " << theStepInitialPhi[theStepN]
461  << " Energy = " << theStepInitialEnergy[theStepN] << " MeV"
462  << " Mass = " << theStepInitialMass[theStepN] << " MeV/c2"
463  << " Beta = " << theStepInitialBeta[theStepN] << " Gamma = " << theStepInitialGamma[theStepN] << std::endl
464  << " Particle " << theStepID[theStepN] << " Final Pt = " << theStepFinalPt[theStepN] << " MeV/c"
465  << " eta = " << theStepFinalEta[theStepN] << " phi = " << theStepFinalPhi[theStepN]
466  << " Energy = " << theStepFinalEnergy[theStepN] << " MeV"
467  << " Mass = " << theStepFinalMass[theStepN] << " MeV/c2"
468  << " Beta = " << theStepFinalBeta[theStepN] << " Gamma = " << theStepFinalGamma[theStepN] << std::endl
469  << " Volume Centre x = " << theVolumeX[theStepN] << " y = " << theVolumeY[theStepN]
470  << " z = " << theVolumeZ[theStepN] << "Polar Radius = "
472  << std::endl
473  << " x axis = (" << theVolumeXaxis1[theStepN] << "," << theVolumeXaxis2[theStepN] << ","
474  << theVolumeXaxis3[theStepN] << ")" << std::endl
475  << " y axis = (" << theVolumeYaxis1[theStepN] << "," << theVolumeYaxis2[theStepN] << ","
476  << theVolumeYaxis3[theStepN] << ")" << std::endl
477  << " z axis = (" << theVolumeZaxis1[theStepN] << "," << theVolumeZaxis2[theStepN] << ","
478  << theVolumeZaxis3[theStepN] << ")" << std::endl
479  << " Secondaries" << std::endl;
480 
481  for (G4TrackVector::const_iterator iSec = aStep->GetSecondary()->begin(); iSec != aStep->GetSecondary()->end();
482  iSec++) {
483  LogDebug("MaterialBudget") << "MaterialBudgetData: tid " << (*iSec)->GetDefinition()->GetPDGEncoding()
484  << " created through process type " << (*iSec)->GetCreatorProcess()->GetProcessType()
485  << (*iSec)->GetCreatorProcess()->GetProcessTypeName(
486  G4ProcessType((*iSec)->GetCreatorProcess()->GetProcessType()));
487  }
488  }
489 
490  theTrkLen = aStep->GetTrack()->GetTrackLength();
491  thePVname = pv->GetName();
492  thePVcopyNo = pv->GetCopyNo();
493  theRadLen = radlen;
494  theIntLen = intlen;
495  theTotalMB += dmb;
496  theTotalIL += dil;
497 
502  theOtherMB += (dmb * theOtherFractionMB);
503 
504  //HGCal
505  theAirMB += (dmb * theAirFractionMB);
506  theCablesMB += (dmb * theCablesFractionMB);
507  theCopperMB += (dmb * theCopperFractionMB);
509  theLeadMB += (dmb * theLeadFractionMB);
510  theEpoxyMB += (dmb * theEpoxyFractionMB);
511  theKaptonMB += (dmb * theKaptonFractionMB);
516  theWCuMB += (dmb * theWCuFractionMB);
517 
522  theOtherIL += (dil * theOtherFractionIL);
523  //HGCal
524  theAirIL += (dil * theAirFractionIL);
525  theCablesIL += (dil * theCablesFractionIL);
526  theCopperIL += (dil * theCopperFractionIL);
528  theLeadIL += (dil * theLeadFractionIL);
529  theEpoxyIL += (dil * theEpoxyFractionIL);
530  theKaptonIL += (dil * theKaptonFractionIL);
535  theWCuIL += (dil * theWCuFractionIL);
536 
537  // rr
538 
539  theStepN++;
540 }
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