source: trunk/source/processes/hadronic/models/coherent_elastic/src/G4VHadronElastic.cc @ 1340

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

update ti head

File size: 7.2 KB
Line 
1//
2// ********************************************************************
3// * License and Disclaimer                                           *
4// *                                                                  *
5// * The  Geant4 software  is  copyright of the Copyright Holders  of *
6// * the Geant4 Collaboration.  It is provided  under  the terms  and *
7// * conditions of the Geant4 Software License,  included in the file *
8// * LICENSE and available at  http://cern.ch/geant4/license .  These *
9// * include a list of copyright holders.                             *
10// *                                                                  *
11// * Neither the authors of this software system, nor their employing *
12// * institutes,nor the agencies providing financial support for this *
13// * work  make  any representation or  warranty, express or implied, *
14// * regarding  this  software system or assume any liability for its *
15// * use.  Please see the license in the file  LICENSE  and URL above *
16// * for the full disclaimer and the limitation of liability.         *
17// *                                                                  *
18// * This  code  implementation is the result of  the  scientific and *
19// * technical work of the GEANT4 collaboration.                      *
20// * By using,  copying,  modifying or  distributing the software (or *
21// * any work based  on the software)  you  agree  to acknowledge its *
22// * use  in  resulting  scientific  publications,  and indicate your *
23// * acceptance of all terms of the Geant4 Software license.          *
24// ********************************************************************
25//
26// $Id: G4VHadronElastic.cc,v 1.4 2009/09/23 14:37:44 vnivanch Exp $
27// GEANT4 tag $Name: geant4-09-03-ref-09 $
28//
29// Geant4 Header : G4VHadronElastic
30//
31// Author : V.Ivanchenko 29 June 2009 (redesign old elastic model)
32// 
33// Modified:
34//
35//
36
37#include "G4VHadronElastic.hh"
38#include "G4ParticleTable.hh"
39#include "G4ParticleDefinition.hh"
40#include "G4IonTable.hh"
41#include "Randomize.hh"
42#include "G4Proton.hh"
43#include "G4Neutron.hh"
44#include "G4Deuteron.hh"
45#include "G4Alpha.hh"
46#include "G4Pow.hh"
47
48G4VHadronElastic::G4VHadronElastic(const G4String& name) 
49  : G4HadronicInteraction(name)
50{
51  SetMinEnergy( 0.0*GeV );
52  SetMaxEnergy( 100.*TeV );
53  lowestEnergyLimit= 1.e-6*eV; 
54
55  theProton   = G4Proton::Proton();
56  theNeutron  = G4Neutron::Neutron();
57  theDeuteron = G4Deuteron::Deuteron();
58  theAlpha    = G4Alpha::Alpha();
59}
60
61G4VHadronElastic::~G4VHadronElastic()
62{}
63
64G4HadFinalState* G4VHadronElastic::ApplyYourself(
65                 const G4HadProjectile& aTrack, G4Nucleus& targetNucleus)
66{
67  theParticleChange.Clear();
68
69  const G4HadProjectile* aParticle = &aTrack;
70  G4double ekin = aParticle->GetKineticEnergy();
71  if(ekin <= lowestEnergyLimit) {
72    theParticleChange.SetEnergyChange(ekin);
73    theParticleChange.SetMomentumChange(aTrack.Get4Momentum().vect().unit());
74    return &theParticleChange;
75  }
76
77  G4double aTarget = targetNucleus.GetN();
78  G4double zTarget = targetNucleus.GetZ();
79
80  G4double plab = aParticle->GetTotalMomentum();
81
82  // Scattered particle referred to axis of incident particle
83  const G4ParticleDefinition* theParticle = aParticle->GetDefinition();
84  G4double m1 = theParticle->GetPDGMass();
85
86  G4int Z = static_cast<G4int>(zTarget+0.5);
87  G4int A = static_cast<G4int>(aTarget+0.5);
88  if (verboseLevel>1) {
89    G4cout << "G4VHadronElastic: " 
90           << aParticle->GetDefinition()->GetParticleName() 
91           << " Plab(GeV/c)= " << plab/GeV 
92           << " Ekin(MeV) = " << ekin/MeV
93           << " scattered off Z= " << Z
94           << " A= " << A
95           << G4endl;
96  }
97  G4ParticleDefinition * theDef = 0;
98
99  if(Z == 1 && A == 1)       theDef = theProton;
100  else if (Z == 1 && A == 2) theDef = theDeuteron;
101  else if (Z == 1 && A == 3) theDef = G4Triton::Triton();
102  else if (Z == 2 && A == 3) theDef = G4He3::He3();
103  else if (Z == 2 && A == 4) theDef = theAlpha;
104  else theDef = G4ParticleTable::GetParticleTable()->FindIon(Z,A,0,Z);
105 
106  G4double m2 = theDef->GetPDGMass();
107  G4LorentzVector lv1 = aParticle->Get4Momentum();
108  G4LorentzVector lv(0.0,0.0,0.0,m2);   
109  lv += lv1;
110
111  G4ThreeVector bst = lv.boostVector();
112  lv1.boost(-bst);
113
114  G4ThreeVector p1 = lv1.vect();
115  momentumCMS = p1.mag();
116  G4double tmax = 4.0*momentumCMS*momentumCMS;
117
118  // Sampling in CM system
119  G4double t    = SampleInvariantT(theParticle, plab, Z, A);
120  G4double phi  = G4UniformRand()*CLHEP::twopi;
121  G4double cost = 1. - 2.0*t/tmax;
122  G4double sint;
123
124  // problem in sampling
125  if(cost > 1.0 || cost < -1.0) {
126    if(verboseLevel > 0) {
127      G4cout << "G4VHadronElastic WARNING cost= " << cost
128             << " after scattering of " 
129             << aParticle->GetDefinition()->GetParticleName()
130             << " p(GeV/c)= " << plab
131             << " on " << theDef->GetParticleName()
132             << G4endl;
133    }
134    cost = 1.0;
135    sint = 0.0;
136
137    // normal situation
138  } else  {
139    sint = std::sqrt((1.0-cost)*(1.0+cost));
140  }   
141  if (verboseLevel>1) {
142    G4cout << " t= " << t << " tmax= " << tmax
143           << " Pcms= " << momentumCMS << "cos(t)=" << cost
144           << " std::sin(t)=" << sint << G4endl;
145  }
146  G4ThreeVector v1(sint*std::cos(phi),sint*std::sin(phi),cost);
147  v1 *= momentumCMS;
148  G4LorentzVector nlv1(v1.x(),v1.y(),v1.z(),
149                       std::sqrt(momentumCMS*momentumCMS + m1*m1));
150
151  nlv1.boost(bst); 
152
153  G4double eFinal = nlv1.e() - m1;
154  if (verboseLevel > 1) {
155    G4cout <<" m= " << m1 << " Efin(MeV)= " << eFinal
156           << " Proj: 4-mom " << lv1 << " Final: " << nlv1
157           << G4endl;
158  }
159  if(eFinal <= lowestEnergyLimit) {
160    if(eFinal < 0.0 && verboseLevel > 0) {
161      G4cout << "G4VHadronElastic WARNING Efinal= " << eFinal
162             << " after scattering of " 
163             << aParticle->GetDefinition()->GetParticleName()
164             << " p(GeV/c)= " << plab
165             << " on " << theDef->GetParticleName()
166             << G4endl;
167    }
168    theParticleChange.SetEnergyChange(0.0);
169    nlv1 = G4LorentzVector(0.0,0.0,0.0,m1);
170
171  } else {
172    theParticleChange.SetMomentumChange(nlv1.vect().unit());
173    theParticleChange.SetEnergyChange(eFinal);
174  } 
175
176  G4LorentzVector nlv0 = lv - nlv1;
177  G4double erec =  nlv0.e() - m2;
178  if (verboseLevel > 1) {
179    G4cout << "Recoil: " <<" m= " << m2 << " Erec(MeV)= " << erec
180           << " 4-mom: " << nlv0
181           << G4endl;
182  }
183 
184  if(erec > GetRecoilEnergyThreshold()) {
185    G4DynamicParticle * aSec = new G4DynamicParticle(theDef, nlv0);
186    theParticleChange.AddSecondary(aSec);
187  } else if(erec > 0.0) {
188    theParticleChange.SetLocalEnergyDeposit(erec);
189  }
190
191  return &theParticleChange;
192}
193
194// sample momentum transfer in the CMS system
195G4double
196G4VHadronElastic::SampleInvariantT(const G4ParticleDefinition* /*p*/, 
197                                   G4double /*ptot*/,
198                                   G4int /*Z*/, G4int A)
199{
200  static const G4double GeV2 = GeV*GeV;
201  G4double tmax = 4.0*momentumCMS*momentumCMS/GeV2;
202  G4double aa, bb, cc;
203  G4double dd = 10.;
204  G4Pow* p = G4Pow::GetInstance();
205  if (A <= 62) {
206    bb = 14.5*p->Z23(A);
207    aa = p->powZ(A, 1.63)/bb;
208    cc = 1.4*p->Z13(A)/dd;
209  } else {
210    bb = 60.*p->Z13(A);
211    aa = p->powZ(A, 1.33)/bb;
212    cc = 0.4*p->powZ(A, 0.4)/dd;
213  }
214  G4double q1 = 1.0 - std::exp(-bb*tmax);
215  G4double q2 = 1.0 - std::exp(-dd*tmax);
216  G4double s1 = q1*aa;
217  G4double s2 = q2*cc;
218  if((s1 + s2)*G4UniformRand() < s2) {
219    q1 = q2;
220    bb = dd;
221  }
222  return -GeV2*std::log(1.0 - G4UniformRand()*q1)/bb;
223}
224
Note: See TracBrowser for help on using the repository browser.