source: trunk/examples/novice/N05/src/ExN05EMShowerModel.cc @ 1143

Last change on this file since 1143 was 807, checked in by garnier, 16 years ago

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27// $Id: ExN05EMShowerModel.cc,v 1.15 2006/11/14 09:21:44 gcosmo Exp $
28// GEANT4 tag $Name:  $
29//
30#include "ExN05EMShowerModel.hh"
31#include "ExN05EnergySpot.hh"
32
33#include "Randomize.hh"
34
35#include "G4Electron.hh"
36#include "G4Positron.hh"
37#include "G4Gamma.hh"
38#include "G4TransportationManager.hh"
39#include "G4VSensitiveDetector.hh"
40#include "G4TouchableHandle.hh"
41
42ExN05EMShowerModel::ExN05EMShowerModel(G4String modelName, G4Region* envelope)
43: G4VFastSimulationModel(modelName, envelope)
44{
45  fFakeStep          = new G4Step();
46  fFakePreStepPoint  = fFakeStep->GetPreStepPoint();
47  fFakePostStepPoint = fFakeStep->GetPostStepPoint();
48  fTouchableHandle   = new G4TouchableHistory();
49  fpNavigator        = new G4Navigator();
50  fNaviSetup         = false;
51}
52
53ExN05EMShowerModel::ExN05EMShowerModel(G4String modelName)
54: G4VFastSimulationModel(modelName)
55{
56  fFakeStep          = new G4Step();
57  fFakePreStepPoint  = fFakeStep->GetPreStepPoint();
58  fFakePostStepPoint = fFakeStep->GetPostStepPoint();
59  fTouchableHandle   = new G4TouchableHistory();
60  fpNavigator        = new G4Navigator();
61  fNaviSetup         = false;
62}
63
64ExN05EMShowerModel::~ExN05EMShowerModel()
65{
66  delete fFakeStep;
67  delete fpNavigator;
68}
69
70G4bool ExN05EMShowerModel::IsApplicable(const G4ParticleDefinition& particleType)
71{
72  return 
73    &particleType == G4Electron::ElectronDefinition() ||
74    &particleType == G4Positron::PositronDefinition() ||
75    &particleType == G4Gamma::GammaDefinition();
76}
77
78G4bool ExN05EMShowerModel::ModelTrigger(const G4FastTrack& fastTrack)
79{
80  // Applies the parameterisation above 100 MeV:
81  return fastTrack.GetPrimaryTrack()->GetKineticEnergy() > 100*MeV;
82}
83
84void ExN05EMShowerModel::DoIt(const G4FastTrack& fastTrack, 
85                     G4FastStep& fastStep)
86{
87  // Kill the parameterised particle:
88  fastStep.KillPrimaryTrack();
89  fastStep.ProposePrimaryTrackPathLength(0.0);
90  fastStep.ProposeTotalEnergyDeposited(fastTrack.GetPrimaryTrack()->GetKineticEnergy());
91
92  // split into "energy spots" energy according to the shower shape:
93  Explode(fastTrack);
94 
95  // and put those energy spots into the crystals:
96  BuildDetectorResponse();
97 
98}
99
100void ExN05EMShowerModel::Explode(const G4FastTrack& fastTrack)
101{
102  //-----------------------------------------------------
103  //
104  //-----------------------------------------------------
105
106  // Reduced quantities:
107  // -- critical energy in CsI:
108  G4double Ec     = 800*MeV/(54. + 1.2); // 54 = mean Z of CsI
109  G4double Energy = fastTrack.GetPrimaryTrack()->GetKineticEnergy();
110  G4double y      = Energy/Ec;
111
112  // compute value of parameter "a" of longitudinal profile, b assumed = 0.5
113  G4double a, tmax, b(0.5), C;
114  if (fastTrack.GetPrimaryTrack()->GetDefinition() == G4Gamma::GammaDefinition()) C = 0.5;
115  else C = -0.5;
116  tmax = 1.0 * (std::log(y) + C);
117  a    = 1.0 + b*tmax;
118
119  // t : reduced quantity = z/X0:
120  G4double    t, bt;
121  G4Material* CsI = G4Material::GetMaterial("CsI");
122  G4double    X0  = CsI->GetRadlen();
123  // Moliere radius:
124  G4double Es = 21*MeV;
125  G4double Rm = X0*Es/Ec;
126
127  // axis of the shower, in global reference frame:
128  G4ThreeVector xShower, yShower, zShower;
129  zShower = fastTrack.GetPrimaryTrack()->GetMomentumDirection();
130  xShower = zShower.orthogonal();
131  yShower = zShower.cross(xShower);
132  // starting point of the shower:
133  G4ThreeVector sShower = fastTrack.GetPrimaryTrack()->GetPosition();
134
135  // We shoot 100 spots of energy:
136  G4int    nSpots  = 100;
137  G4double deposit = Energy/double(nSpots);
138  ExN05EnergySpot eSpot;
139  eSpot.SetEnergy(deposit);
140  G4ThreeVector ePoint;
141  G4double z, r, phi;
142
143  feSpotList.clear();
144  for (int i = 0; i < nSpots; i++)
145    {
146      // Longitudinal profile:
147      // -- shoot z according to Gamma distribution:
148      bt = CLHEP::RandGamma::shoot(a,1.0);
149      t  = bt/b;
150      z  = t*X0;
151     
152      // transverse profile:
153      // we set 90% of energy in one Rm,
154      // the rest between 1 and 3.5 Rm:
155      G4double xr = G4UniformRand();
156      if (xr < 0.9) r = xr/0.9*Rm;
157      else r = ((xr - 0.9)/0.1*2.5 + 1.0)*Rm;
158      phi = G4UniformRand()*twopi;
159
160      // build the position:
161      ePoint = sShower +
162        z*zShower +
163        r*std::cos(phi)*xShower + r*std::sin(phi)*yShower;
164     
165      // and the energy spot:
166      eSpot.SetPosition(ePoint);
167
168      // Records the eSpot:
169      feSpotList.push_back(eSpot);
170    }
171}
172
173
174void ExN05EMShowerModel::BuildDetectorResponse()
175{
176  // Does the assignation of the energy spots to the sensitive volumes:
177  for (size_t i = 0; i < feSpotList.size(); i++)
178    {
179      // Draw the energy spot:
180      feSpotList[i].Draw();
181      //      feSpotList[i].Print();
182     
183      // "converts" the energy spot into the fake
184      // G4Step to pass to sensitive detector:
185      AssignSpotAndCallHit(feSpotList[i]);
186    }
187}
188
189
190void ExN05EMShowerModel::AssignSpotAndCallHit(const ExN05EnergySpot &eSpot)
191{
192  //
193  // "converts" the energy spot into the fake
194  // G4Step to pass to sensitive detector:
195  //
196  FillFakeStep(eSpot);
197
198  //
199  // call sensitive part: taken/adapted from the stepping:
200  // Send G4Step information to Hit/Dig if the volume is sensitive
201  //
202  G4VPhysicalVolume* pCurrentVolume = 
203    fFakeStep->GetPreStepPoint()->GetPhysicalVolume();
204  G4VSensitiveDetector* pSensitive;
205 
206  if( pCurrentVolume != 0 )
207    {
208      pSensitive = pCurrentVolume->GetLogicalVolume()->
209        GetSensitiveDetector();
210      if( pSensitive != 0 )
211        {
212          pSensitive->Hit(fFakeStep);
213        }
214    }
215}
216
217
218void ExN05EMShowerModel::FillFakeStep(const ExN05EnergySpot &eSpot)
219{
220  //-----------------------------------------------------------
221  // find in which volume the spot is.
222  //-----------------------------------------------------------
223  if (!fNaviSetup)
224    {
225      fpNavigator->
226        SetWorldVolume(G4TransportationManager::GetTransportationManager()->
227                       GetNavigatorForTracking()->GetWorldVolume());
228      fpNavigator->
229        LocateGlobalPointAndUpdateTouchableHandle(eSpot.GetPosition(),
230                                            G4ThreeVector(0.,0.,0.),
231                                            fTouchableHandle,
232                                            false);
233      fNaviSetup = true;
234    }
235  else
236    {
237      fpNavigator->
238        LocateGlobalPointAndUpdateTouchableHandle(eSpot.GetPosition(),
239                                            G4ThreeVector(0.,0.,0.),
240                                            fTouchableHandle);
241     }
242  //--------------------------------------
243  // Fills attribute of the G4Step needed
244  // by our sensitive detector:
245  //-------------------------------------
246  // set touchable volume at PreStepPoint:
247  fFakePreStepPoint->SetTouchableHandle(fTouchableHandle);
248  // set total energy deposit:
249  fFakeStep->SetTotalEnergyDeposit(eSpot.GetEnergy());
250}
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