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SteppingAction Class Reference

#include <SteppingAction.h>

Inheritance diagram for SteppingAction:

Public Member Functions

 SteppingAction (EventAction *ea, const edm::ParameterSet &ps, const CMSSteppingVerbose *, bool hasW)
 
void UserSteppingAction (const G4Step *aStep) final
 
 ~SteppingAction () override
 

Public Attributes

SimActivityRegistry::G4StepSignal m_g4StepSignal
 

Private Member Functions

bool initPointer ()
 
bool isInsideDeadRegion (const G4Region *reg) const
 
bool isLowEnergy (const G4Step *aStep) const
 
bool isOutOfTimeWindow (G4Track *theTrack, const G4Region *reg) const
 
bool isThisVolume (const G4VTouchable *touch, const G4VPhysicalVolume *pv) const
 
void PrintKilledTrack (const G4Track *, const TrackStatus &) const
 

Private Attributes

const G4VPhysicalVolume * calo
 
std::vector< std::string > deadRegionNames
 
std::vector< const G4Region * > deadRegions
 
std::vector< double > ekinMins
 
std::vector< std::string > ekinNames
 
std::vector< std::string > ekinParticles
 
std::vector< int > ekinPDG
 
std::vector< G4LogicalVolume * > ekinVolumes
 
EventActioneventAction_
 
bool hasWatcher
 
bool initialized
 
bool killBeamPipe
 
std::vector< std::string > maxTimeNames
 
std::vector< const G4Region * > maxTimeRegions
 
double maxTrackTime
 
std::vector< double > maxTrackTimes
 
unsigned int ndeadRegions
 
unsigned int numberEkins
 
unsigned int numberPart
 
unsigned int numberTimes
 
const CMSSteppingVerbosesteppingVerbose
 
double theCriticalDensity
 
double theCriticalEnergyForVacuum
 
const G4VPhysicalVolume * tracker
 

Detailed Description

Definition at line 29 of file SteppingAction.h.

Constructor & Destructor Documentation

SteppingAction::SteppingAction ( EventAction ea,
const edm::ParameterSet ps,
const CMSSteppingVerbose sv,
bool  hasW 
)
explicit

Definition at line 17 of file SteppingAction.cc.

References deadRegionNames, ekinMins, ekinNames, ekinParticles, g, edm::ParameterSet::getParameter(), mps_fire::i, killBeamPipe, maxTimeNames, maxTrackTime, maxTrackTimes, MeV, ndeadRegions, numberEkins, numberPart, numberTimes, theCriticalDensity, and theCriticalEnergyForVacuum.

19  : eventAction_(e), tracker(nullptr), calo(nullptr), steppingVerbose(sv),
20  initialized(false), killBeamPipe(false),hasWatcher(hasW)
21 {
23  (p.getParameter<double>("CriticalEnergyForVacuum")*CLHEP::MeV);
24  if(0.0 < theCriticalEnergyForVacuum) { killBeamPipe = true; }
26  (p.getParameter<double>("CriticalDensity")*CLHEP::g/CLHEP::cm3);
27  maxTrackTime = p.getParameter<double>("MaxTrackTime")*CLHEP::ns;
28  maxTrackTimes = p.getParameter<std::vector<double> >("MaxTrackTimes");
29  maxTimeNames = p.getParameter<std::vector<std::string> >("MaxTimeNames");
30  deadRegionNames = p.getParameter<std::vector<std::string> >("DeadRegions");
31  ekinMins = p.getParameter<std::vector<double> >("EkinThresholds");
32  ekinNames = p.getParameter<std::vector<std::string> >("EkinNames");
33  ekinParticles = p.getParameter<std::vector<std::string> >("EkinParticles");
34 
35  edm::LogVerbatim("SimG4CoreApplication")
36  << "SteppingAction:: KillBeamPipe = " << killBeamPipe << " CriticalDensity = "
37  << theCriticalDensity*CLHEP::cm3/CLHEP::g << " g/cm3;"
38  << " CriticalEnergyForVacuum = " << theCriticalEnergyForVacuum/CLHEP::MeV
39  << " Mev;" << " MaxTrackTime = " << maxTrackTime/CLHEP::ns << " ns";
40 
41  numberTimes = maxTrackTimes.size();
42  if(numberTimes > 0) {
43  for (unsigned int i=0; i<numberTimes; i++) {
44  edm::LogVerbatim("SimG4CoreApplication")
45  << "SteppingAction::MaxTrackTime for " << maxTimeNames[i] << " is "
46  << maxTrackTimes[i] << " ns ";
47  maxTrackTimes[i] *= ns;
48  }
49  }
50 
51  ndeadRegions = deadRegionNames.size();
52  if(ndeadRegions > 0) {
53  edm::LogVerbatim("SimG4CoreApplication")
54  << "SteppingAction: Number of DeadRegions where all trackes are killed "
55  << ndeadRegions;
56  for(unsigned int i=0; i<ndeadRegions; ++i) {
57  edm::LogVerbatim("SimG4CoreApplication")
58  << "SteppingAction: DeadRegion " << i << ". " << deadRegionNames[i];
59  }
60  }
61  numberEkins = ekinNames.size();
62  numberPart = ekinParticles.size();
63  if(0 == numberPart) { numberEkins = 0; }
64 
65  if(numberEkins > 0) {
66 
67  edm::LogVerbatim("SimG4CoreApplication")
68  << "SteppingAction::Kill following " << numberPart
69  << " particles in " << numberEkins << " volumes";
70  for (unsigned int i=0; i<numberPart; ++i) {
71  edm::LogVerbatim("SimG4CoreApplication")
72  << "SteppingAction::Particle " << i << " " << ekinParticles[i]
73  << " Threshold = " << ekinMins[i] << " MeV";
74  ekinMins[i] *= CLHEP::MeV;
75  }
76  for (unsigned int i=0; i<numberEkins; ++i) {
77  edm::LogVerbatim("SimG4CoreApplication")
78  << "SteppingAction::LogVolume[" << i << "] = " << ekinNames[i];
79  }
80  }
81 }
const G4VPhysicalVolume * tracker
double theCriticalDensity
unsigned int numberPart
const CMSSteppingVerbose * steppingVerbose
unsigned int numberEkins
The Signals That Services Can Subscribe To This is based on ActivityRegistry and is current per Services can connect to the signals distributed by the ActivityRegistry in order to monitor the activity of the application Each possible callback has some defined which we here list in angle e g
Definition: Activities.doc:4
const double MeV
std::vector< std::string > deadRegionNames
const G4VPhysicalVolume * calo
unsigned int numberTimes
std::vector< double > maxTrackTimes
double theCriticalEnergyForVacuum
EventAction * eventAction_
std::vector< double > ekinMins
std::vector< std::string > maxTimeNames
std::vector< std::string > ekinNames
unsigned int ndeadRegions
std::vector< std::string > ekinParticles
SteppingAction::~SteppingAction ( )
override

Definition at line 83 of file SteppingAction.cc.

83 {}

Member Function Documentation

bool SteppingAction::initPointer ( )
private

Definition at line 175 of file SteppingAction.cc.

References calo, deadRegionNames, deadRegions, ekinMins, ekinNames, ekinParticles, ekinPDG, ekinVolumes, mps_fire::i, LogDebug, maxTimeNames, maxTimeRegions, MeV, ndeadRegions, numberEkins, numberPart, numberTimes, and tracker.

Referenced by UserSteppingAction().

176 {
177  const G4PhysicalVolumeStore * pvs = G4PhysicalVolumeStore::GetInstance();
178  if (pvs) {
179  std::vector<G4VPhysicalVolume*>::const_iterator pvcite;
180  for (pvcite = pvs->begin(); pvcite != pvs->end(); ++pvcite) {
181  if ((*pvcite)->GetName() == "Tracker") tracker = (*pvcite);
182  if ((*pvcite)->GetName() == "CALO") calo = (*pvcite);
183  if (tracker && calo) break;
184  }
185  if (tracker || calo) {
186  edm::LogVerbatim("SimG4CoreApplication")
187  << "Pointer for Tracker " << tracker << " and for Calo " << calo;
188  if (tracker) LogDebug("SimG4CoreApplication") << "Tracker vol name "
189  << tracker->GetName();
190  if (calo) LogDebug("SimG4CoreApplication") << "Calorimeter vol name "
191  << calo->GetName();
192  }
193  }
194 
195  const G4LogicalVolumeStore * lvs = G4LogicalVolumeStore::GetInstance();
196  if (numberEkins > 0) {
197  if (lvs) {
198  ekinVolumes.resize(numberEkins, nullptr);
199  std::vector<G4LogicalVolume*>::const_iterator lvcite;
200  for (lvcite = lvs->begin(); lvcite != lvs->end(); ++lvcite) {
201  for (unsigned int i=0; i<numberEkins; ++i) {
202  if ((*lvcite)->GetName() == (G4String)(ekinNames[i])) {
203  ekinVolumes[i] = (*lvcite);
204  break;
205  }
206  }
207  }
208  }
209  for (unsigned int i=0; i<numberEkins; ++i) {
210  edm::LogVerbatim("SimG4CoreApplication")
211  << ekinVolumes[i]->GetName() <<" with pointer " << ekinVolumes[i];
212  }
213  }
214 
215  if(numberPart > 0) {
216  G4ParticleTable * theParticleTable = G4ParticleTable::GetParticleTable();
217  G4String partName;
218  ekinPDG.resize(numberPart, 0);
219  for (unsigned int i=0; i<numberPart; ++i) {
220  ekinPDG[i] =
221  theParticleTable->FindParticle(partName=ekinParticles[i])->GetPDGEncoding();
222  edm::LogVerbatim("SimG4CoreApplication")
223  << "Particle " << ekinParticles[i] << " with PDG code " << ekinPDG[i]
224  << " and KE cut off " << ekinMins[i]/MeV << " MeV";
225  }
226  }
227 
228  const G4RegionStore * rs = G4RegionStore::GetInstance();
229  if (numberTimes > 0) {
230  maxTimeRegions.resize(numberTimes, nullptr);
231  std::vector<G4Region*>::const_iterator rcite;
232  for (rcite = rs->begin(); rcite != rs->end(); ++rcite) {
233  for (unsigned int i=0; i<numberTimes; ++i) {
234  if ((*rcite)->GetName() == (G4String)(maxTimeNames[i])) {
235  maxTimeRegions[i] = (*rcite);
236  break;
237  }
238  }
239  }
240  }
241  if (ndeadRegions > 0) {
242  deadRegions.resize(ndeadRegions, nullptr);
243  std::vector<G4Region*>::const_iterator rcite;
244  for (rcite = rs->begin(); rcite != rs->end(); ++rcite) {
245  for (unsigned int i=0; i<ndeadRegions; ++i) {
246  if ((*rcite)->GetName() == (G4String)(deadRegionNames[i])) {
247  deadRegions[i] = (*rcite);
248  break;
249  }
250  }
251  }
252  }
253  return true;
254 }
#define LogDebug(id)
const G4VPhysicalVolume * tracker
std::vector< int > ekinPDG
std::vector< const G4Region * > deadRegions
unsigned int numberPart
unsigned int numberEkins
const double MeV
std::vector< std::string > deadRegionNames
const G4VPhysicalVolume * calo
unsigned int numberTimes
std::vector< G4LogicalVolume * > ekinVolumes
std::vector< double > ekinMins
std::vector< std::string > maxTimeNames
std::vector< std::string > ekinNames
unsigned int ndeadRegions
std::vector< std::string > ekinParticles
std::vector< const G4Region * > maxTimeRegions
bool SteppingAction::isInsideDeadRegion ( const G4Region *  reg) const
inlineprivate

Definition at line 74 of file SteppingAction.h.

References deadRegions, mps_fire::i, and ndeadRegions.

Referenced by UserSteppingAction().

75 {
76  bool res = false;
77  for(unsigned int i=0; i<ndeadRegions; ++i) {
78  if(reg == deadRegions[i]) {
79  res = true;
80  break;
81  }
82  }
83  return res;
84 }
std::vector< const G4Region * > deadRegions
Definition: Electron.h:6
unsigned int ndeadRegions
bool SteppingAction::isLowEnergy ( const G4Step *  aStep) const
private

Definition at line 152 of file SteppingAction.cc.

References ekinMins, ekinPDG, ekinVolumes, RemoveAddSevLevel::flag, mps_fire::i, numberEkins, and numberPart.

Referenced by UserSteppingAction().

153 {
154  bool flag = false;
155  const G4StepPoint* sp = aStep->GetPostStepPoint();
156  G4LogicalVolume* lv = sp->GetPhysicalVolume()->GetLogicalVolume();
157  for (unsigned int i=0; i<numberEkins; ++i) {
158  if (lv == ekinVolumes[i]) {
159  flag = true;
160  break;
161  }
162  }
163  if (flag) {
164  double ekin = sp->GetKineticEnergy();
165  int pCode = aStep->GetTrack()->GetDefinition()->GetPDGEncoding();
166  for (unsigned int i=0; i<numberPart; ++i) {
167  if (pCode == ekinPDG[i]) {
168  return (ekin <= ekinMins[i]) ? true : false;
169  }
170  }
171  }
172  return false;
173 }
std::vector< int > ekinPDG
unsigned int numberPart
unsigned int numberEkins
std::vector< G4LogicalVolume * > ekinVolumes
std::vector< double > ekinMins
bool SteppingAction::isOutOfTimeWindow ( G4Track *  theTrack,
const G4Region *  reg 
) const
inlineprivate

Definition at line 87 of file SteppingAction.h.

References mps_fire::i, maxTimeRegions, maxTrackTime, maxTrackTimes, and numberTimes.

Referenced by UserSteppingAction().

88 {
89  double tofM = maxTrackTime;
90  for (unsigned int i=0; i<numberTimes; ++i) {
91  if (reg == maxTimeRegions[i]) {
92  tofM = maxTrackTimes[i];
93  break;
94  }
95  }
96  return (theTrack->GetGlobalTime() > tofM) ? true : false;
97 }
unsigned int numberTimes
std::vector< double > maxTrackTimes
std::vector< const G4Region * > maxTimeRegions
bool SteppingAction::isThisVolume ( const G4VTouchable *  touch,
const G4VPhysicalVolume *  pv 
) const
inlineprivate

Definition at line 99 of file SteppingAction.h.

References hcalDigis_cfi::level, and MetAnalyzer::pv().

Referenced by UserSteppingAction().

101 {
102  int level = (touch->GetHistoryDepth())+1;
103  return (level >= 3) ? (touch->GetVolume(level - 3) == pv) : false;
104 }
def pv(vc)
Definition: MetAnalyzer.py:7
void SteppingAction::PrintKilledTrack ( const G4Track *  aTrack,
const TrackStatus tst 
) const
private

Definition at line 256 of file SteppingAction.cc.

References MeV, MetAnalyzer::pv(), sDeadRegion, sKilledByProcess, sLowEnergy, sLowEnergyInVacuum, sOutOfTime, and AlCaHLTBitMon_QueryRunRegistry::string.

Referenced by UserSteppingAction().

258 {
259  std::string vname = "";
260  std::string rname = "";
261  std::string typ = " ";
262  switch (tst) {
263  case sKilledByProcess:
264  typ = " G4Process ";
265  break;
266  case sDeadRegion:
267  typ = " in dead region ";
268  break;
269  case sOutOfTime:
270  typ = " out of time window ";
271  break;
272  case sLowEnergy:
273  typ = " low energy limit ";
274  break;
275  case sLowEnergyInVacuum:
276  typ = " low energy limit in vacuum ";
277  break;
278  default:
279  break;
280  }
281  G4VPhysicalVolume* pv = aTrack->GetNextVolume();
282  if(pv) {
283  vname = pv->GetLogicalVolume()->GetName();
284  rname = pv->GetLogicalVolume()->GetRegion()->GetName();
285  }
286 
287  edm::LogVerbatim("SimG4CoreApplication")
288  << "Track #" << aTrack->GetTrackID()
289  << " " << aTrack->GetDefinition()->GetParticleName()
290  << " E(MeV)= " << aTrack->GetKineticEnergy()/MeV
291  << " T(ns)= " << aTrack->GetGlobalTime()/ns
292  << " is killed due to " << typ
293  << " inside LV: " << vname << " (" << rname
294  << ") at " << aTrack->GetPosition();
295 }
const double MeV
def pv(vc)
Definition: MetAnalyzer.py:7
void SteppingAction::UserSteppingAction ( const G4Step *  aStep)
final

Definition at line 85 of file SteppingAction.cc.

References EventAction::addTkCaloStateInfo(), calo, eventAction_, initialized, initPointer(), isInsideDeadRegion(), isLowEnergy(), isOutOfTimeWindow(), isThisVolume(), killBeamPipe, m_g4StepSignal, CMSSteppingVerbose::NextStep(), numberEkins, AlCaHLTBitMon_ParallelJobs::p, PrintKilledTrack(), sAlive, sDeadRegion, sKilledByProcess, sLowEnergy, sLowEnergyInVacuum, sOutOfTime, steppingVerbose, theCriticalDensity, theCriticalEnergyForVacuum, tracker, x, y, and z.

86 {
87  if (!initialized) { initialized = initPointer(); }
88 
89  // if(hasWatcher) { m_g4StepSignal(aStep); }
90  m_g4StepSignal(aStep);
91 
92  G4Track * theTrack = aStep->GetTrack();
93  TrackStatus tstat = (theTrack->GetTrackStatus() == fAlive) ? sAlive : sKilledByProcess;
94  G4StepPoint* postStep = aStep->GetPostStepPoint();
95 
96  if(0 == tstat && postStep->GetPhysicalVolume() != nullptr) {
97 
98  G4StepPoint* preStep = aStep->GetPreStepPoint();
99  const G4Region* theRegion =
100  preStep->GetPhysicalVolume()->GetLogicalVolume()->GetRegion();
101 
102  // kill in dead regions
103  if(isInsideDeadRegion(theRegion)) { tstat = sDeadRegion; }
104 
105  // kill out of time
106  if(0 == tstat && isOutOfTimeWindow(theTrack, theRegion)) { tstat = sOutOfTime; }
107 
108  // kill low-energy in volumes on demand
109  if(0 == tstat && numberEkins > 0 && isLowEnergy(aStep)) { tstat = sLowEnergy; }
110 
111  // kill low-energy in vacuum
112  G4double kinEnergy = theTrack->GetKineticEnergy();
113  if(0 == tstat && killBeamPipe && kinEnergy < theCriticalEnergyForVacuum
114  && theTrack->GetDefinition()->GetPDGCharge() != 0.0 && kinEnergy > 0.0
115  && theTrack->GetNextVolume()->GetLogicalVolume()->GetMaterial()->GetDensity()
116  <= theCriticalDensity) {
117  tstat = sLowEnergyInVacuum;
118  }
119 
120  // check transition tracker/calo
121  if(0 == tstat) {
122 
123  if(isThisVolume(preStep->GetTouchable(),tracker) &&
124  isThisVolume(postStep->GetTouchable(),calo)) {
125 
126  math::XYZVectorD pos((preStep->GetPosition()).x(),
127  (preStep->GetPosition()).y(),
128  (preStep->GetPosition()).z());
129 
130  math::XYZTLorentzVectorD mom((preStep->GetMomentum()).x(),
131  (preStep->GetMomentum()).y(),
132  (preStep->GetMomentum()).z(),
133  preStep->GetTotalEnergy());
134 
135  uint32_t id = theTrack->GetTrackID();
136 
137  std::pair<math::XYZVectorD,math::XYZTLorentzVectorD> p(pos,mom);
139  }
140  } else {
141  theTrack->SetTrackStatus(fStopAndKill);
142 #ifdef DebugLog
143  PrintKilledTrack(theTrack, tstat);
144 #endif
145  }
146  }
147  if(nullptr != steppingVerbose) {
148  steppingVerbose->NextStep(aStep, fpSteppingManager, (1 < tstat));
149  }
150 }
const G4VPhysicalVolume * tracker
ROOT::Math::LorentzVector< ROOT::Math::PxPyPzE4D< double > > XYZTLorentzVectorD
Lorentz vector with cylindrical internal representation using pseudorapidity.
Definition: LorentzVector.h:14
double theCriticalDensity
SimActivityRegistry::G4StepSignal m_g4StepSignal
void NextStep(const G4Step *, const G4SteppingManager *ptr, bool isKilled) const
const CMSSteppingVerbose * steppingVerbose
bool isOutOfTimeWindow(G4Track *theTrack, const G4Region *reg) const
unsigned int numberEkins
ROOT::Math::DisplacementVector3D< ROOT::Math::Cartesian3D< double > > XYZVectorD
spatial vector with cartesian internal representation
Definition: Vector3D.h:8
TrackStatus
const G4VPhysicalVolume * calo
double theCriticalEnergyForVacuum
EventAction * eventAction_
void addTkCaloStateInfo(uint32_t t, const std::pair< math::XYZVectorD, math::XYZTLorentzVectorD > &p)
Definition: EventAction.cc:81
bool isLowEnergy(const G4Step *aStep) const
bool isInsideDeadRegion(const G4Region *reg) const
void PrintKilledTrack(const G4Track *, const TrackStatus &) const
bool isThisVolume(const G4VTouchable *touch, const G4VPhysicalVolume *pv) const

Member Data Documentation

const G4VPhysicalVolume * SteppingAction::calo
private

Definition at line 52 of file SteppingAction.h.

Referenced by initPointer(), and UserSteppingAction().

std::vector<std::string> SteppingAction::deadRegionNames
private

Definition at line 59 of file SteppingAction.h.

Referenced by initPointer(), and SteppingAction().

std::vector<const G4Region*> SteppingAction::deadRegions
private

Definition at line 61 of file SteppingAction.h.

Referenced by initPointer(), and isInsideDeadRegion().

std::vector<double> SteppingAction::ekinMins
private

Definition at line 57 of file SteppingAction.h.

Referenced by initPointer(), isLowEnergy(), and SteppingAction().

std::vector<std::string> SteppingAction::ekinNames
private

Definition at line 58 of file SteppingAction.h.

Referenced by initPointer(), and SteppingAction().

std::vector<std::string> SteppingAction::ekinParticles
private

Definition at line 58 of file SteppingAction.h.

Referenced by initPointer(), and SteppingAction().

std::vector<int> SteppingAction::ekinPDG
private

Definition at line 63 of file SteppingAction.h.

Referenced by initPointer(), and isLowEnergy().

std::vector<G4LogicalVolume*> SteppingAction::ekinVolumes
private

Definition at line 62 of file SteppingAction.h.

Referenced by initPointer(), and isLowEnergy().

EventAction* SteppingAction::eventAction_
private

Definition at line 51 of file SteppingAction.h.

Referenced by UserSteppingAction().

bool SteppingAction::hasWatcher
private

Definition at line 71 of file SteppingAction.h.

bool SteppingAction::initialized
private

Definition at line 69 of file SteppingAction.h.

Referenced by UserSteppingAction().

bool SteppingAction::killBeamPipe
private

Definition at line 70 of file SteppingAction.h.

Referenced by SteppingAction(), and UserSteppingAction().

SimActivityRegistry::G4StepSignal SteppingAction::m_g4StepSignal
std::vector<std::string> SteppingAction::maxTimeNames
private

Definition at line 58 of file SteppingAction.h.

Referenced by initPointer(), and SteppingAction().

std::vector<const G4Region*> SteppingAction::maxTimeRegions
private

Definition at line 60 of file SteppingAction.h.

Referenced by initPointer(), and isOutOfTimeWindow().

double SteppingAction::maxTrackTime
private

Definition at line 56 of file SteppingAction.h.

Referenced by isOutOfTimeWindow(), and SteppingAction().

std::vector<double> SteppingAction::maxTrackTimes
private

Definition at line 57 of file SteppingAction.h.

Referenced by isOutOfTimeWindow(), and SteppingAction().

unsigned int SteppingAction::ndeadRegions
private

Definition at line 67 of file SteppingAction.h.

Referenced by initPointer(), isInsideDeadRegion(), and SteppingAction().

unsigned int SteppingAction::numberEkins
private

Definition at line 65 of file SteppingAction.h.

Referenced by initPointer(), isLowEnergy(), SteppingAction(), and UserSteppingAction().

unsigned int SteppingAction::numberPart
private

Definition at line 66 of file SteppingAction.h.

Referenced by initPointer(), isLowEnergy(), and SteppingAction().

unsigned int SteppingAction::numberTimes
private

Definition at line 64 of file SteppingAction.h.

Referenced by initPointer(), isOutOfTimeWindow(), and SteppingAction().

const CMSSteppingVerbose* SteppingAction::steppingVerbose
private

Definition at line 53 of file SteppingAction.h.

Referenced by UserSteppingAction().

double SteppingAction::theCriticalDensity
private

Definition at line 55 of file SteppingAction.h.

Referenced by SteppingAction(), and UserSteppingAction().

double SteppingAction::theCriticalEnergyForVacuum
private

Definition at line 54 of file SteppingAction.h.

Referenced by SteppingAction(), and UserSteppingAction().

const G4VPhysicalVolume* SteppingAction::tracker
private

Definition at line 52 of file SteppingAction.h.

Referenced by initPointer(), and UserSteppingAction().