source: trunk/source/processes/hadronic/models/neutron_hp/src/G4NeutronHPorLElastic.cc @ 1340

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27// 05-11-21 NeutronHP or Low Energy Parameterization Models
28//          Implemented by T. Koi (SLAC/SCCS)
29//          If NeutronHP data do not available for an element, then Low Energy
30//          Parameterization models handle the interactions of the element.
31// 080319 Compilation warnings - gcc-4.3.0 fix by T. Koi
32//
33
34// neutron_hp -- source file
35// J.P. Wellisch, Nov-1996
36// A prototype of the low energy neutron transport model.
37//
38#include "G4NeutronHPorLElastic.hh"
39#include "G4NeutronHPElasticFS.hh"
40
41G4NeutronHPorLElastic::G4NeutronHPorLElastic()
42  :G4HadronicInteraction("NeutronHPorLElastic")
43{
44   overrideSuspension = false;
45   G4NeutronHPElasticFS * theFS = new G4NeutronHPElasticFS;
46   if(!getenv("G4NEUTRONHPDATA")) 
47       throw G4HadronicException(__FILE__, __LINE__, "Please setenv G4NEUTRONHPDATA to point to the neutron cross-section files.");
48   dirName = getenv("G4NEUTRONHPDATA");
49   G4String tString = "/Elastic/";
50   dirName = dirName + tString;
51//    G4cout <<"G4NeutronHPorLElastic::G4NeutronHPorLElastic testit "<<dirName<<G4endl;
52   numEle = G4Element::GetNumberOfElements();
53   theElastic = new G4NeutronHPChannel[numEle];
54   unavailable_elements.clear();
55   for (G4int i=0; i<numEle; i++)
56   {
57      theElastic[i].Init((*(G4Element::GetElementTable()))[i], dirName);
58      //while(!theElastic[i].Register(theFS));
59      try { while(!theElastic[i].Register(theFS)) ; }
60      catch ( G4HadronicException )
61      {
62          unavailable_elements.insert ( (*(G4Element::GetElementTable()))[i]->GetName() ); 
63      }
64   }
65   delete theFS;
66   SetMinEnergy(0.*eV);
67   SetMaxEnergy(20.*MeV);
68   if ( unavailable_elements.size() > 0 ) 
69   {
70      std::set< G4String>::iterator it;
71      G4cout << "HP Elastic data are not available for thess  elements "<< G4endl;
72      for ( it = unavailable_elements.begin() ; it != unavailable_elements.end() ; it++ )
73         G4cout << *it << G4endl;
74      G4cout << "Low Energy Parameterization Models will be used."<< G4endl;
75   }
76
77   createXSectionDataSet();
78}
79 
80G4NeutronHPorLElastic::~G4NeutronHPorLElastic()
81{
82   delete [] theElastic;
83   delete theDataSet; 
84}
85 
86#include "G4NeutronHPThermalBoost.hh"
87 
88G4HadFinalState * G4NeutronHPorLElastic::ApplyYourself(const G4HadProjectile& aTrack, G4Nucleus& )
89{
90   const G4Material * theMaterial = aTrack.GetMaterial();
91   G4int n = theMaterial->GetNumberOfElements();
92   G4int index = theMaterial->GetElement(0)->GetIndex();
93   if(n!=1)
94   {
95      G4int i;
96      xSec = new G4double[n];
97      G4double sum=0;
98      const G4double * NumAtomsPerVolume = theMaterial->GetVecNbOfAtomsPerVolume();
99      G4double rWeight;   
100      G4NeutronHPThermalBoost aThermalE;
101      for (i=0; i<n; i++)
102      {
103        index = theMaterial->GetElement(i)->GetIndex();
104        rWeight = NumAtomsPerVolume[i];
105        G4double x = aThermalE.GetThermalEnergy(aTrack, theMaterial->GetElement(i), theMaterial->GetTemperature());
106
107        //xSec[i] = theElastic[index].GetXsec(aThermalE.GetThermalEnergy(aTrack,
108        //                                                                   theMaterial->GetElement(i),
109        //                                                                   theMaterial->GetTemperature()));
110        xSec[i] = theElastic[index].GetXsec(x);
111
112        xSec[i] *= rWeight;
113        sum+=xSec[i];
114      }
115      G4double random = G4UniformRand();
116      G4double running = 0;
117      for (i=0; i<n; i++)
118      {
119        running += xSec[i];
120        index = theMaterial->GetElement(i)->GetIndex();
121        if(random<=running/sum) break;
122      }
123      delete [] xSec;
124      // it is element-wise initialised.
125    }
126    G4HadFinalState* finalState = theElastic[index].ApplyYourself(aTrack);
127    if (overrideSuspension) finalState->SetStatusChange(isAlive);
128    return finalState;
129}
130
131
132
133G4bool G4NeutronHPorLElastic::IsThisElementOK( G4String name )
134{
135   if ( unavailable_elements.find( name ) == unavailable_elements.end() ) 
136      return TRUE;
137   else 
138      return FALSE; 
139}
140
141
142
143void G4NeutronHPorLElastic::createXSectionDataSet()
144{
145   theDataSet = new G4NeutronHPorLElasticData ( theElastic , &unavailable_elements );
146}
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