source: trunk/source/processes/hadronic/stopping/src/G4PiMinusAbsorptionAtRest.cc @ 846

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25//
26//      File name:     G4PiMinusAbsorptionAtRest.hh
27//
28//      Author:        Maria Grazia Pia (pia@genova.infn.it)
29//
30//      Creation date: 8 May 1998
31//
32//      Modifications:
33//      MGP            4 Jul 1998 Changed excitation energy calculation
34//      MGP           14 Sep 1998 Fixed excitation energy calculation
35//
36// -------------------------------------------------------------------
37
38#include "G4ios.hh"
39
40#include "G4PiMinusAbsorptionAtRest.hh"
41
42#include "G4PiMinusStopLi.hh"
43#include "G4PiMinusStopC.hh"
44#include "G4PiMinusStopN.hh"
45#include "G4PiMinusStopO.hh"
46#include "G4PiMinusStopAl.hh"
47#include "G4PiMinusStopCu.hh"
48#include "G4PiMinusStopCo.hh"
49#include "G4PiMinusStopTa.hh"
50#include "G4PiMinusStopPb.hh"
51#include "G4StopTheoDeexcitation.hh"
52#include "G4StopDummyDeexcitation.hh"
53#include "G4DynamicParticle.hh"
54#include "G4DynamicParticleVector.hh"
55#include "G4NucleiPropertiesTable.hh"
56#include "Randomize.hh"
57#include "G4ThreeVector.hh"
58#include "G4LorentzVector.hh"
59
60// Constructor
61
62G4PiMinusAbsorptionAtRest::G4PiMinusAbsorptionAtRest(const G4String& processName,
63                                      G4ProcessType   aType ) :
64  G4VRestProcess (processName, aType)
65{
66  //  _stopAbsorption = 0;
67  //  _stopDeexcitation = 0;
68
69  _indexDeexcitation = 0;
70
71  if (verboseLevel>0) 
72    { G4cout << GetProcessName() << " is created "<< G4endl; }
73}
74
75
76// Destructor
77
78G4PiMinusAbsorptionAtRest::~G4PiMinusAbsorptionAtRest()
79{}
80
81
82G4VParticleChange* G4PiMinusAbsorptionAtRest::AtRestDoIt(const G4Track& track, const G4Step& )
83{
84  const G4DynamicParticle* stoppedHadron = track.GetDynamicParticle();
85     
86  // Check applicability
87  if (! IsApplicable(*(stoppedHadron->GetDefinition())))
88    {
89      G4cerr 
90      << "G4PiMinusAbsorptionAtRest: ERROR, particle must be a pion minus!" 
91      << G4endl;
92      return NULL;
93    }
94
95  // Get the current material
96  const G4Material* material = track.GetMaterial();
97
98  G4double A=-1;
99  G4double Z=-1;
100  G4double random = G4UniformRand();
101  const G4ElementVector* theElementVector = material->GetElementVector();
102  unsigned int i;
103  G4double sum = 0;
104  G4double totalsum=0;
105  for(i=0; i<material->GetNumberOfElements(); ++i)
106    {
107      if((*theElementVector)[i]->GetZ()!=1) totalsum+=material->GetFractionVector()[i];
108    }
109  for (i = 0; i<material->GetNumberOfElements(); ++i)
110    {
111      if((*theElementVector)[i]->GetZ()!=1) sum += material->GetFractionVector()[i];
112      if ( sum/totalsum > random ) 
113        { 
114          A = (*theElementVector)[i]->GetA()*mole/g;
115          Z = (*theElementVector)[i]->GetZ();
116          break;
117        }
118    }
119
120  // Do the interaction with the nucleon cluster
121 
122  G4PiMinusStopMaterial* algorithm = LoadAlgorithm(static_cast<G4int>(Z));
123  G4PiMinusStopAbsorption stopAbsorption(algorithm,Z,A);
124  stopAbsorption.SetVerboseLevel(verboseLevel);
125
126  G4DynamicParticleVector* absorptionProducts = stopAbsorption.DoAbsorption();
127
128  // Deal with the leftover nucleus
129
130  G4double pionEnergy = stoppedHadron->GetTotalEnergy();
131  G4double excitation = pionEnergy - stopAbsorption.Energy();
132  if (excitation < 0.) 
133  {
134    G4Exception("G4PiMinusAbsorptionAtRest", "007", FatalException,
135                "AtRestDoIt -- excitation energy < 0");
136  }
137  if (verboseLevel>0) { G4cout << " excitation " << excitation << G4endl; }
138
139  G4StopDeexcitationAlgorithm* nucleusAlgorithm = LoadNucleusAlgorithm();
140  G4StopDeexcitation stopDeexcitation(nucleusAlgorithm);
141
142  G4double newZ = Z - stopAbsorption.NProtons();
143  G4double newN = A - Z - stopAbsorption.NNeutrons();
144  G4double newA = newZ + newN;
145  G4double pNucleus = (stopAbsorption.RecoilMomentum()).mag();
146  G4ReactionProductVector* fragmentationProducts = stopDeexcitation.DoBreakUp(newA,newZ,excitation,pNucleus);
147
148  unsigned int nAbsorptionProducts = 0;
149  if (absorptionProducts != 0)     
150    { nAbsorptionProducts  =  absorptionProducts->size(); }
151
152  unsigned int nFragmentationProducts = 0;
153  if (fragmentationProducts != 0) 
154    { nFragmentationProducts = fragmentationProducts->size(); }
155 
156  if (verboseLevel>0) 
157    {
158      G4cout << "nAbsorptionProducts = " << nAbsorptionProducts
159             << "  nFragmentationProducts = " << nFragmentationProducts
160             << G4endl;
161    }
162
163  // Deal with ParticleChange final state
164
165  aParticleChange.Initialize(track);
166  aParticleChange.SetNumberOfSecondaries(G4int(nAbsorptionProducts + nFragmentationProducts)); 
167     
168  for (i = 0; i<nAbsorptionProducts; i++)
169    { aParticleChange.AddSecondary((*absorptionProducts)[i]); }
170
171//  for (i = 0; i<nFragmentationProducts; i++)
172//    { aParticleChange.AddSecondary(fragmentationProducts->at(i)); }
173  for(i=0; i<nFragmentationProducts; i++)
174  {
175    G4DynamicParticle * aNew = 
176       new G4DynamicParticle((*fragmentationProducts)[i]->GetDefinition(),
177                             (*fragmentationProducts)[i]->GetMomentum());
178    G4double newTime = aParticleChange.GetGlobalTime((*fragmentationProducts)[i]->GetFormationTime());
179    aParticleChange.AddSecondary(aNew, newTime);
180    delete (*fragmentationProducts)[i];
181  }
182
183  if (fragmentationProducts != 0)   delete fragmentationProducts;   
184
185  if (_indexDeexcitation == 1) aParticleChange.ProposeLocalEnergyDeposit(excitation);
186
187  // Kill the absorbed pion
188  aParticleChange.ProposeTrackStatus(fStopAndKill); 
189
190  return &aParticleChange;
191
192}
193
194G4PiMinusStopMaterial* G4PiMinusAbsorptionAtRest::LoadAlgorithm(int Z)
195{ 
196  if (verboseLevel>0) 
197    {
198      G4cout << "Load material algorithm " << Z << G4endl; 
199    }
200
201  G4int index = 3;
202  if (Z <= 3) { index = 3;}
203  if (Z > 3 && Z<= 6) {index = 6;}
204  if (Z == 7) {index = 7;}
205  if (Z >= 8 && Z<= 11) {index = 8;}
206  if (Z >= 12 && Z<= 18) {index = 13;}
207  if (Z >=19 && Z<= 27) {index = 27;}
208  if (Z >= 28 && Z<= 51) {index = 29;}
209  if (Z >=52 ) {index = 73;}
210
211  switch (index) 
212    {
213    case 3:
214      if (verboseLevel>0) 
215        { G4cout << " =================== Load Li algorithm " << G4endl; }
216      return new G4PiMinusStopLi();
217    case 6:
218      if (verboseLevel>0) 
219        { G4cout << " =================== Load C algorithm " << G4endl; }
220      return new G4PiMinusStopC();
221    case 7:
222      if (verboseLevel>0) 
223        { G4cout << " =================== Load N algorithm " << G4endl; }
224      return new G4PiMinusStopN();
225    case 8:
226      if (verboseLevel>0) 
227        { G4cout << " =================== Load O algorithm " << G4endl; }
228      return new G4PiMinusStopO();
229    case 13:
230      if (verboseLevel>0) 
231        { G4cout << " =================== Load Al algorithm " << G4endl; }
232      return new G4PiMinusStopAl();
233    case 27:
234      if (verboseLevel>0) 
235        { G4cout << " =================== Load Cu algorithm " << G4endl; }
236      return new G4PiMinusStopCu();
237    case 29:
238      if (verboseLevel>0) 
239        { G4cout << " =================== Load Co algorithm " << G4endl; }
240      return new G4PiMinusStopCo();
241    case 73:
242      if (verboseLevel>0) 
243        { G4cout << " =================== Load Ta algorithm " << G4endl; }
244      return new G4PiMinusStopTa();
245    default: 
246      if (verboseLevel>0) 
247        { G4cout << " =================== Load default material algorithm " << G4endl; }
248      return new G4PiMinusStopC();
249    }
250}
251
252G4StopDeexcitationAlgorithm* G4PiMinusAbsorptionAtRest::LoadNucleusAlgorithm()
253{ 
254
255  switch (_indexDeexcitation) 
256    {
257    case 0:
258      if (verboseLevel>0) 
259        { G4cout << " =================== Load Theo deexcitation " << G4endl; }
260      return new G4StopTheoDeexcitation();
261    case 1:
262      if (verboseLevel>0) 
263        { G4cout << " =================== Load Dummy deexcitation " << G4endl; }
264      return new G4StopDummyDeexcitation();
265    default: 
266      if (verboseLevel>0) 
267        { G4cout << " =================== Load default deexcitation " << G4endl; }
268      return new G4StopTheoDeexcitation();
269    }
270}
271
272void G4PiMinusAbsorptionAtRest::SetDeexcitationAlgorithm(G4int index)
273{ 
274  _indexDeexcitation = index;
275}
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