source: trunk/source/physics_lists/lists/src/G4HadronInelasticQBBC.cc @ 921

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en test de gl2ps. Problemes de libraries

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26// $Id: G4HadronInelasticQBBC.cc,v 1.15 2008/11/21 18:42:36 vnivanch Exp $
27// GEANT4 tag $Name: geant4-09-02-cand-01 $
28//
29//---------------------------------------------------------------------------
30//
31// ClassName:   G4HadronInelasticQBBC
32//
33// Author: 11 April 2006 V. Ivanchenko
34//
35// Modified:
36// 05.07.2006 V.Ivanchenko fix problem of initialisation of HP
37// 15.04.2007 V.Ivanchenko include quasi-elastic and change FTF low energy
38//
39//----------------------------------------------------------------------------
40//
41
42#include "G4HadronInelasticQBBC.hh"
43
44#include "G4HadronInelasticProcess.hh"
45
46#include "G4ParticleDefinition.hh"
47#include "G4ProcessManager.hh"
48
49#include "G4MesonConstructor.hh"
50#include "G4BaryonConstructor.hh"
51
52#include "G4PiNuclearCrossSection.hh"
53#include "G4BGGNucleonInelasticXS.hh"
54#include "G4BGGPionInelasticXS.hh"
55
56#include "G4TheoFSGenerator.hh"
57#include "G4QStringChipsParticleLevelInterface.hh"
58#include "G4StringChipsInterface.hh"
59#include "G4GeneratorPrecompoundInterface.hh"
60#include "G4QGSMFragmentation.hh"
61#include "G4LundStringFragmentation.hh"
62#include "G4ExcitedStringDecay.hh"
63
64#include "G4BinaryCascade.hh"
65#include "G4HadronFissionProcess.hh"
66#include "G4HadronCaptureProcess.hh"
67#include "G4LFission.hh"
68#include "G4LCapture.hh"
69
70#include "G4NeutronHPInelastic.hh"
71#include "G4NeutronHPFission.hh"
72#include "G4NeutronHPCapture.hh"
73
74#include "G4UInelasticCrossSection.hh"
75
76G4HadronInelasticQBBC::G4HadronInelasticQBBC(const G4String& name, 
77    G4int ver, G4bool ftf, G4bool bert, G4bool chips, G4bool hp, G4bool glauber)
78  : G4VPhysicsConstructor(name), verbose(ver), ftfFlag(ftf), bertFlag(bert), 
79    chipsFlag(chips), hpFlag(hp), glFlag(glauber), wasActivated(false)
80{
81  if(verbose > 1) G4cout << "### HadronInelasticQBBC bertFlag= " <<  bertFlag <<G4endl;
82  theHPXSecI = 0;
83  theHPXSecC = 0;
84  theHPXSecF = 0;
85  theCascade = 0;
86  preCompound = 0;
87  theCHIPSCascade   = 0;
88  theQuasiElastic   = 0;
89  theQGStringDecay  = 0;
90  theQGStringModel  = 0;
91  theFTFBStringDecay = 0;
92  theFTFBStringModel = 0;
93  theFTFCStringDecay = 0;
94  theFTFCStringModel = 0;
95}
96
97G4HadronInelasticQBBC::~G4HadronInelasticQBBC()
98{
99  delete theCascade;
100  delete preCompound;
101  delete theCHIPSCascade;
102  delete theQuasiElastic;
103  delete theQGStringDecay;
104  delete theQGStringModel;
105  delete theFTFBStringDecay;
106  delete theFTFCStringDecay;
107  delete theFTFBStringModel;
108  delete theFTFCStringModel;
109  delete theHPXSecI;
110  delete theHPXSecC;
111  delete theHPXSecF;
112}
113
114void G4HadronInelasticQBBC::ConstructParticle()
115{
116  G4MesonConstructor pMesonConstructor;
117  pMesonConstructor.ConstructParticle();
118
119  G4BaryonConstructor pBaryonConstructor;
120  pBaryonConstructor.ConstructParticle();
121}
122
123void G4HadronInelasticQBBC::ConstructProcess()
124{
125  if(wasActivated) return;
126  wasActivated = true;
127
128  if(verbose > 1) 
129    G4cout << "### HadronInelasticQBBC Construct Process"
130           << " ftfFlag= " << ftfFlag << "  bertFlag= " << bertFlag
131           << G4endl;
132
133  G4double minEstring  = 9.5*GeV;
134  G4double maxEcascade = 7.5*GeV;
135  G4double minFTF      = 4.5*GeV;
136  G4double maxFTF      = 25.*GeV;
137
138  //Binary
139  G4HadronicInteraction* theBIC = new G4BinaryCascade();
140  theBIC->SetMinEnergy(0.0);
141  theBIC->SetMaxEnergy(maxEcascade);
142
143  //Bertini
144  G4HadronicInteraction* theBERT = new G4CascadeInterface();
145  theBERT->SetMinEnergy(0.0);
146  theBERT->SetMaxEnergy(maxEcascade);
147
148  //CHIPS
149  G4HadronicInteraction* theCHIPS = new G4StringChipsInterface();
150  theCHIPS->SetMinEnergy(0.0);
151  theCHIPS->SetMaxEnergy(maxEcascade);
152
153  //QGS
154  theCascade = new G4BinaryCascade();
155  preCompound = new G4GeneratorPrecompoundInterface();
156
157  theCHIPSCascade = new G4QStringChipsParticleLevelInterface;
158  G4TheoFSGenerator* theQGSModel = new G4TheoFSGenerator("QGSP");
159  theQGStringModel  = new G4QGSModel< G4QGSParticipants >;
160  theQGStringDecay  = new G4ExcitedStringDecay(new G4QGSMFragmentation());
161  theQGStringModel->SetFragmentationModel(theQGStringDecay);
162  theQGSModel->SetTransport(preCompound);
163
164  theQuasiElastic = new G4QuasiElasticChannel();
165  theQGSModel->SetQuasiElasticChannel(theQuasiElastic);
166  theQGSModel->SetHighEnergyGenerator(theQGStringModel);
167  theQGSModel->SetMinEnergy(minEstring);
168  theQGSModel->SetMaxEnergy(100*TeV);
169
170  //FTFB
171  G4TheoFSGenerator* theFTFBModel = new G4TheoFSGenerator("FTFP");
172  theFTFBStringModel = new G4FTFModel();
173  theFTFBStringDecay = new G4ExcitedStringDecay(new G4LundStringFragmentation());
174  theFTFBStringModel->SetFragmentationModel(theFTFBStringDecay);
175
176  //  theFTFBModel->SetTransport(theCascade);
177  theFTFBModel->SetTransport(preCompound);
178  theFTFBModel->SetHighEnergyGenerator(theFTFBStringModel);
179  theFTFBModel->SetMinEnergy(minFTF);
180  theFTFBModel->SetMaxEnergy(100*TeV);
181
182  //FTFP
183  G4TheoFSGenerator* theFTFCModel = new G4TheoFSGenerator("FTFP");
184  theFTFCStringModel = new G4FTFModel();
185  theFTFCStringDecay = new G4ExcitedStringDecay(new G4LundStringFragmentation());
186  theFTFCStringModel->SetFragmentationModel(theFTFCStringDecay);
187
188  theFTFCModel->SetTransport(preCompound);
189  theFTFCModel->SetHighEnergyGenerator(theFTFCStringModel);
190  theFTFCModel->SetMinEnergy(minFTF);
191  theFTFCModel->SetMaxEnergy(maxFTF);
192
193  theParticleIterator->reset();
194  while( (*theParticleIterator)() ) {
195    G4ParticleDefinition* particle = theParticleIterator->value();
196    G4String pname = particle->GetParticleName();
197    if(verbose > 1) G4cout << "### HadronInelasticQBBC:  " << pname << G4endl;
198    if(pname == "anti_lambda"  ||
199       pname == "anti_neutron" ||
200       pname == "anti_omega-"  || 
201       pname == "anti_proton"  || 
202       pname == "anti_sigma-"  || 
203       pname == "anti_sigma+"  || 
204       pname == "anti_xi-"  || 
205       pname == "anti_xi0"  || 
206       pname == "kaon-"     || 
207       pname == "kaon+"     || 
208       pname == "kaon0S"    || 
209       pname == "kaon0L"    || 
210       pname == "lambda"    || 
211       pname == "neutron"   || 
212       pname == "omega-"    || 
213       pname == "pi-"       || 
214       pname == "pi+"       || 
215       pname == "proton"    || 
216       pname == "sigma-"    || 
217       pname == "sigma+"    || 
218       pname == "xi-"       || 
219       pname == "xi0") {
220     
221      G4ProcessManager* pmanager = particle->GetProcessManager();
222      G4HadronInelasticProcess* hp = 
223        new G4HadronInelasticProcess("hInelastic", particle);
224      pmanager->AddDiscreteProcess(hp);
225
226      if(pname == "proton") {
227        hp->AddDataSet(&theXSecP);
228
229        hp->RegisterMe(theQGSModel);
230        hp->RegisterMe(theFTFCModel);
231        //if(ftfFlag) hp->RegisterMe(theFTFCModel);
232        //else        hp->RegisterMe(theQGSModel);
233 
234        if(bertFlag) hp->RegisterMe(theBERT);
235        else         hp->RegisterMe(theBIC);
236     
237        if(glFlag)
238          hp->AddDataSet(new G4BGGNucleonInelasticXS(particle));
239
240      } else if(pname == "neutron") {
241        hp->AddDataSet(&theXSecN);
242        hp->RegisterMe(theQGSModel);
243        hp->RegisterMe(theFTFCModel);
244        //if(ftfFlag) hp->RegisterMe(theFTFCModel);
245        //else        hp->RegisterMe(theQGSModel);
246
247        G4HadronCaptureProcess* theNeutronCapture = 
248          new G4HadronCaptureProcess("nCapture");
249        G4HadronFissionProcess* theNeutronFission = 
250          new G4HadronFissionProcess("nFission");
251        pmanager->AddDiscreteProcess(theNeutronCapture);
252        pmanager->AddDiscreteProcess(theNeutronFission);
253
254        G4double emin = 0.0;
255        if(hpFlag) {
256          emin = 19.5*MeV;
257          theHPXSecI = new G4NeutronHPInelasticData;
258          theHPXSecC = new G4NeutronHPCaptureData;
259          theHPXSecF = new G4NeutronHPFissionData;
260          hp->AddDataSet(theHPXSecI);
261          theNeutronCapture->AddDataSet(theHPXSecC);
262          theNeutronFission->AddDataSet(theHPXSecF);
263          hp->RegisterMe(new G4NeutronHPInelastic());
264          theNeutronCapture->RegisterMe(new G4NeutronHPCapture());
265          theNeutronFission->RegisterMe(new G4NeutronHPFission());
266        }
267
268        G4HadronicInteraction* theB;
269        if(bertFlag) theB = new G4CascadeInterface();
270        else         theB = new G4BinaryCascade();
271        theB->SetMinEnergy(emin);
272        theB->SetMaxEnergy(maxEcascade);
273        hp->RegisterMe(theB);
274
275        if(glFlag)
276          hp->AddDataSet(new G4BGGNucleonInelasticXS(particle));
277
278        G4HadronicInteraction* theC = new G4LCapture();         
279        theC->SetMinEnergy(emin);
280        theNeutronCapture->RegisterMe(theC);
281
282        G4HadronicInteraction* theF = new G4LFission();
283        theF->SetMinEnergy(emin);
284        theNeutronFission->RegisterMe(theF);
285
286      } else if(pname == "pi-" || pname == "pi+") {
287        hp->AddDataSet(&thePiCross);
288        hp->RegisterMe(theQGSModel);
289        hp->RegisterMe(theFTFCModel);
290        //if(ftfFlag) hp->RegisterMe(theFTFCModel);
291        //else        hp->RegisterMe(theQGSModel);
292
293        hp->RegisterMe(theBERT);
294        //if(bertFlag) hp->RegisterMe(theBERT);
295        //else         hp->RegisterMe(theBIC);
296
297        if(glFlag) 
298          hp->AddDataSet(new G4BGGPionInelasticXS(particle));
299
300      } else if(pname == "kaon-"     || 
301                pname == "kaon+"     || 
302                pname == "kaon0S"    || 
303                pname == "kaon0L") {
304        hp->RegisterMe(theFTFBModel);
305        hp->RegisterMe(theBERT);
306        //hp->AddDataSet(new G4UInelasticCrossSection(particle));
307
308      } else if(pname == "lambda"    || 
309                pname == "sigma-"    || 
310                pname == "sigma+"    || 
311                pname == "xi-"       || 
312                pname == "xi0") {
313
314        hp->RegisterMe(theFTFBModel);
315        hp->RegisterMe(theBERT);
316        //hp->AddDataSet(new G4UInelasticCrossSection(particle));
317
318      } else if(pname == "anti_proton" || pname == "anti_neutron") {
319        hp->RegisterMe(theFTFBModel);
320        hp->RegisterMe(theCHIPS);
321        //hp->AddDataSet(new G4UInelasticCrossSection(particle));
322
323      } else {
324        hp->RegisterMe(theFTFBModel);
325        hp->RegisterMe(theCHIPS);
326        //hp->AddDataSet(new G4UInelasticCrossSection(particle));
327      }
328
329      if(verbose > 1)
330        G4cout << "### HadronInelasticQBBC: " << hp->GetProcessName()
331               << " added for " << pname << G4endl;
332    }
333  }
334}
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