source: trunk/source/processes/hadronic/models/im_r_matrix/src/G4XnpElasticLowE.cc @ 1201

Last change on this file since 1201 was 819, checked in by garnier, 16 years ago

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27// -------------------------------------------------------------------
28//      GEANT4 Class file
29//
30//      For information related to this code contact:
31//
32//      File name:     G4XnpElasticLowE
33//
34//      Author:       
35//
36//      Creation date: 15 April 1999
37//
38//      Modifications:
39//     
40// Neutron-Proton elastic cross section
41// Linear interpolation from data table
42//
43// -------------------------------------------------------------------
44
45#include "globals.hh"
46#include "G4ios.hh"
47#include "G4XnpElasticLowE.hh"
48#include "G4KineticTrack.hh"
49#include "G4ParticleDefinition.hh"
50#include "G4PhysicsVector.hh"
51#include "G4PhysicsLnVector.hh"
52#include "G4ParticleDefinition.hh"
53#include "G4Proton.hh"
54#include "G4Neutron.hh"
55
56const G4double G4XnpElasticLowE::_lowLimit = 0.;
57const G4double G4XnpElasticLowE::_highLimit = 3.*GeV;
58
59// Low energy limit of the cross-section table (in GeV)
60// Units are assigned while filling the PhysicsVector
61const G4double G4XnpElasticLowE::_eMinTable = 1.8964808;
62const G4double G4XnpElasticLowE::_eStepLog = 0.01;
63
64// Cross-sections in mb
65// Units are assigned while filling the PhysicsVector
66const G4int G4XnpElasticLowE::_tableSize = 101;
67const G4double G4XnpElasticLowE::_sigmaTable[101] = 
68{ 
69  1500.0,  //GF  was 0.0
70  248.20, 93.38, 55.26, 44.50, 41.33, 38.48, 37.20, 35.98,
71  35.02, 34.47, 32.48, 30.76, 29.46, 28.53, 27.84, 27.20,
72  26.53, 25.95, 25.59, 25.46, 25.00, 24.49, 24.08, 23.86,
73  23.17, 22.70, 21.88, 21.48, 20.22, 19.75, 18.97, 18.39,
74  17.98, 17.63, 17.21, 16.72, 16.68, 16.58, 16.42, 16.22,
75  15.98, 15.71, 15.42, 15.14, 14.87, 14.65, 14.44, 14.26,
76  14.10, 13.95, 13.80, 13.64, 13.47, 13.29, 13.09, 12.89,
77  12.68, 12.47, 12.27, 12.06, 11.84, 11.76, 11.69, 11.60,
78  11.50, 11.41, 11.29, 11.17, 11.06, 10.93, 10.81, 10.68,
79  10.56, 10.44, 10.33, 10.21, 10.12, 10.03,  9.96,  9.89,
80  9.83,  9.80,  9.77,  9.75,  9.74,  9.74,  9.74,  9.76,
81  9.73,  9.70,  9.68,  9.65,  9.63,  9.60,  9.57,  9.55,
82  9.52,  9.49,  9.46,  9.43
83};
84
85
86G4XnpElasticLowE::G4XnpElasticLowE() 
87{ 
88  // Cross-sections are available in the range (_eMin,_eMax)
89
90  _eMin = _eMinTable * GeV;
91  _eMin = std::exp(std::log(_eMinTable)-_eStepLog)*GeV;
92  _eMax = std::exp(std::log(_eMinTable) + _tableSize * _eStepLog) * GeV;
93
94  // Protections: validity limits must be compatible with available data
95
96  if (_eMin < _lowLimit)
97    throw G4HadronicException(__FILE__, __LINE__, "G4XnpElasticLowE::G4XnpElasticLowE - Low energy limit not valid");
98   
99  if (_highLimit > _eMax)
100    throw G4HadronicException(__FILE__, __LINE__, "G4XnpElasticLowE::G4XnpElasticLowE - High energy limit not valid");
101   
102  _sigma = new G4PhysicsLnVector(_eMin,_eMax,_tableSize);
103  G4int i;
104  for (i=0; i<_tableSize; i++)
105    {
106      G4double value = _sigmaTable[i] * millibarn;
107      _sigma->PutValue(i,value);
108    }
109}
110
111
112G4XnpElasticLowE::~G4XnpElasticLowE()
113{
114  delete _sigma;
115}
116
117
118G4bool G4XnpElasticLowE::operator==(const G4XnpElasticLowE &right) const
119{
120  return (this == (G4XnpElasticLowE *) &right);
121}
122
123
124G4bool G4XnpElasticLowE::operator!=(const G4XnpElasticLowE &right) const
125{
126  return (this != (G4XnpElasticLowE *) &right);
127}
128
129
130G4double G4XnpElasticLowE::CrossSection(const G4KineticTrack& trk1, const G4KineticTrack& trk2) const
131{
132  G4double sigma = 0.;
133  G4double sqrtS = (trk1.Get4Momentum() + trk2.Get4Momentum()).mag();
134  G4bool dummy = false;
135
136  G4ParticleDefinition* proton = G4Proton::ProtonDefinition();
137  G4ParticleDefinition* neutron = G4Neutron::NeutronDefinition();   
138
139  G4ParticleDefinition* def1 = trk1.GetDefinition();
140  G4ParticleDefinition* def2 = trk2.GetDefinition();
141  if ( (def1 == proton && def2 == neutron) ||
142       (def1 == neutron && def2 == proton) )
143  {
144      if (sqrtS >= _eMin && sqrtS <= _eMax)
145      {
146          sigma = _sigma->GetValue(sqrtS,dummy);
147      } else if ( sqrtS < _eMin )
148      {
149          sigma = _sigma->GetValue(_eMin,dummy);
150      }
151  }
152
153  return sigma;
154}
155
156void G4XnpElasticLowE::Print() const
157{
158  // Dump the cross-section table
159  G4cout << Name() << "Cross-section table: " << G4endl;
160  G4bool dummy = false;
161  G4int i;
162
163  for (i=0; i<_tableSize; i++)
164    {
165      G4double e = _sigma->GetLowEdgeEnergy(i) / GeV;
166      G4double sigma = _sigma->GetValue(e,dummy) / millibarn;
167      G4cout << i << ") e = " << e << " GeV ---- Cross section = " << sigma << " mb " << G4endl;
168    }
169
170  G4VCrossSectionSource::Print();
171}
172
173
174G4String G4XnpElasticLowE::Name() const
175{
176  G4String name("npElasticLowE");
177  return name;
178}
179
180
181G4bool G4XnpElasticLowE::IsValid(G4double e) const
182{
183  G4bool answer = InLimits(e,_lowLimit,_highLimit);
184
185  return answer;
186}
187
188
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