source: trunk/source/processes/hadronic/models/neutron_hp/include/G4NeutronHPContAngularPar.hh @ 1340

Last change on this file since 1340 was 1340, checked in by garnier, 14 years ago

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27// $Id: G4NeutronHPContAngularPar.hh,v 1.13 2008/07/21 23:26:29 tkoi Exp $
28// GEANT4 tag $Name: geant4-09-03-ref-09 $
29//
30// 080718 Add ClearHistories method and related class member
31//
32#ifndef G4NeutronHPContAngularPar_h
33#define G4NeutronHPContAngularPar_h 1
34
35#include "G4ios.hh"
36#include <fstream>
37#include "globals.hh"
38#include "G4NeutronHPList.hh"
39#include "G4ReactionProduct.hh"
40#include "G4NeutronHPInterpolator.hh"
41#include "G4InterpolationManager.hh"
42
43class G4NeutronHPContAngularPar
44{
45  public:
46 
47  G4NeutronHPContAngularPar()
48  {
49    theAngular = 0;
50    currentMeanEnergy = -2;
51     fresh = true;
52  }
53  ~G4NeutronHPContAngularPar()
54  {
55    if(theAngular!=0) delete [] theAngular;
56  }
57 
58  void Init(std::ifstream & aDataFile);
59 
60  G4ReactionProduct * Sample(G4double anEnergy, G4double massCode, G4double mass, 
61                             G4int angularRep, G4int interpol);
62 
63  G4double GetEnergy() { return theEnergy; }
64 
65  void SetPrimary(G4ReactionProduct * aPrimary)
66  {
67    thePrimary = aPrimary;
68  }
69 
70  void SetTarget(G4ReactionProduct * aTarget)
71  {
72    theTarget = aTarget;
73  }
74 
75  void SetTargetCode(G4double aTargetCode) { theTargetCode = aTargetCode; }
76 
77  void SetInterpolation(G4int theInterpolation)
78  {
79    theManager.Init(theInterpolation, nEnergies); // one range only
80  }
81
82  void Merge(G4double anEnergy, G4InterpolationScheme & aScheme, 
83             G4NeutronHPContAngularPar & store1, 
84             G4NeutronHPContAngularPar & store2) // hmmmm, this interpolates legendre coefficients. Dangerous @@@
85  {
86    nDiscreteEnergies = store1.nDiscreteEnergies;
87    nAngularParameters = store1.nAngularParameters;
88    nEnergies = store1.nEnergies;
89    theManager = store1.theManager;
90    theEnergy = anEnergy;
91    if(theAngular != 0) delete [] theAngular;
92    theAngular = new G4NeutronHPList[nEnergies];
93    G4int i, ii;
94    G4double value;
95    for(i=0; i<nEnergies; i++)
96    {
97      theAngular[i].SetLabel(store1.theAngular[i].GetLabel());
98      for(ii=0; ii<nAngularParameters; ii++)
99      {
100//        G4cout <<"test "<<i<<" "<<store1.theEnergy<<" "<<store2.theEnergy<<" "
101//             << store1.theAngular[i].GetValue(ii)<<" "<<
102//             store2.theAngular[i].GetValue(ii)<<G4endl;
103        value = theInt.Interpolate(aScheme, anEnergy, 
104                                   store1.theEnergy, store2.theEnergy,
105                                   store1.theAngular[i].GetValue(ii),
106                                   store2.theAngular[i].GetValue(ii));
107        theAngular[i].SetValue(ii, value);
108      }
109    }
110  };
111 
112  G4double MeanEnergyOfThisInteraction()
113  {
114    G4double result;
115    if(currentMeanEnergy<-1)
116    {
117      return 0;
118      // throw G4HadronicException(__FILE__, __LINE__, "G4NeutronHPContAngularPar: Logical error in Product class");
119    }
120    else
121    {
122      result = currentMeanEnergy;
123    }
124    currentMeanEnergy = -2;
125    return result;
126  }
127 
128  private:
129 
130  // incoming particle
131  G4double theEnergy; 
132 
133  // number of exit channel energies
134  G4int nEnergies; 
135  // number of discrete exit channels
136  G4int nDiscreteEnergies;
137  // number of angular paramerers per channel
138  G4int nAngularParameters;
139  // knows the interpolation between List labels
140  G4InterpolationManager theManager; 
141  // on per exit-channel energy
142  G4NeutronHPList * theAngular; 
143 
144  private:
145 
146  G4NeutronHPInterpolator theInt;
147 
148  G4double theTargetCode;
149  G4ReactionProduct * theTarget;
150  G4ReactionProduct * thePrimary;
151 
152  G4double currentMeanEnergy;
153
154//080718
155   public:
156      void ClearHistories(){ fresh = true; };
157   private:
158      G4bool fresh; 
159      G4double remaining_energy; // represent energy rest of cascade chain
160};
161#endif
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