source: trunk/source/processes/hadronic/models/parton_string/diffraction/src/G4FTFParticipants.cc@ 864

Last change on this file since 864 was 819, checked in by garnier, 17 years ago

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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 *
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24// ********************************************************************
25//
26//
27// $Id: G4FTFParticipants.cc,v 1.7 2007/04/24 10:33:00 gunter Exp $
28// GEANT4 tag $Name: geant4-09-01-patch-02 $
29//
30// ------------------------------------------------------------
31// GEANT 4 class implementation file
32//
33// ---------------- G4FTFParticipants----------------
34// by Gunter Folger, June 1998.
35// class finding colliding particles in FTFPartonStringModel
36// Changed in a part by V. Uzhinsky in oder to put in correcpondence
37// with original FRITIOF mode. November - December 2006.
38// ------------------------------------------------------------
39
40#include "G4FTFParticipants.hh"
41#include "G4DiffractiveSplitableHadron.hh"
42#include "G4VSplitableHadron.hh"
43//#include "G4PomeronCrossSection.hh" // Uzhi
44#include "G4FTFCrossSection.hh" // Uzhi
45#include "Randomize.hh"
46#include <utility>
47
48
49// Class G4FTFParticipants
50
51
52
53G4FTFParticipants::G4FTFParticipants()
54{
55}
56
57G4FTFParticipants::G4FTFParticipants(const G4FTFParticipants &): G4VParticipants()
58{
59}
60
61
62G4FTFParticipants::~G4FTFParticipants()
63{
64}
65
66
67//const G4FTFParticipants & G4FTFParticipants::operator=(const G4FTFParticipants &right)
68//{}
69
70
71//int G4FTFParticipants::operator==(const G4FTFParticipants &right) const
72//{}
73
74//int G4FTFParticipants::operator!=(const G4FTFParticipants &right) const
75//{}
76
77void G4FTFParticipants::BuildInteractions(const G4ReactionProduct &thePrimary)
78{
79
80 StartLoop(); // reset Loop over Interactions
81
82 for(unsigned int i=0; i<theInteractions.size(); i++) delete theInteractions[i];
83 theInteractions.clear();
84
85// --- cms energy
86
87 G4double s = sqr( thePrimary.GetMass() ) +
88 sqr( G4Proton::Proton()->GetPDGMass() ) +
89 2*thePrimary.GetTotalEnergy()*G4Proton::Proton()->GetPDGMass();
90
91// G4cout << " primary Total E (GeV): " << thePrimary.GetTotalEnergy()/GeV << G4endl;
92// G4cout << " primary Mass (GeV): " << thePrimary.GetMass() /GeV << G4endl;
93// G4cout << "cms std::sqrt(s) (GeV) = " << std::sqrt(s) / GeV << G4endl;
94
95// G4PomeronCrossSection theCrossSection(thePrimary.GetDefinition()); // Uzhi
96 G4FTFCrossSection theCrossSection(thePrimary.GetDefinition(),s); // Uzhi
97
98
99 G4double deltaxy=2 * fermi;
100
101 G4VSplitableHadron * primarySplitable=new G4DiffractiveSplitableHadron(thePrimary);
102
103 G4double xyradius;
104 xyradius =theNucleus->GetOuterRadius() + deltaxy;
105
106 G4bool nucleusNeedsShift = true;
107
108 while ( theInteractions.size() == 0 )
109 {
110 std::pair<G4double, G4double> theImpactParameter;
111 theImpactParameter = theNucleus->ChooseImpactXandY(xyradius);
112 G4double impactX = theImpactParameter.first;
113 G4double impactY = theImpactParameter.second;
114
115 theNucleus->StartLoop();
116 G4Nucleon * nucleon;
117 while ( (nucleon=theNucleus->GetNextNucleon()) )
118 {
119 G4double impact2= sqr(impactX - nucleon->GetPosition().x()) +
120 sqr(impactY - nucleon->GetPosition().y());
121// if ( theCrossSection.GetInelasticProbability(s,impact2) // Uzhi
122 if ( theCrossSection.GetInelasticProbability( impact2/fermi/fermi) // Uzhi
123 > G4UniformRand() )
124 {
125 if ( nucleusNeedsShift )
126 { // on the first hit, shift nucleus
127 nucleusNeedsShift = false;
128 theNucleus->DoTranslation(G4ThreeVector(-1*impactX,-1*impactY,0.));
129 impactX=0;
130 impactY=0;
131 }
132 G4VSplitableHadron * targetSplitable;
133 if ( (targetSplitable=nucleon->GetSplitableHadron()) == NULL )
134 {
135 targetSplitable= new G4DiffractiveSplitableHadron(*nucleon);
136 nucleon->Hit(targetSplitable);
137 }
138 G4InteractionContent * aInteraction = new G4InteractionContent(primarySplitable);
139 aInteraction->SetTarget(targetSplitable);
140 theInteractions.push_back(aInteraction);
141 }
142 }
143
144// G4cout << "Number of Hit nucleons " << theInteractions.size() // entries()
145// << "\t" << impactX/fermi << "\t"<<impactY/fermi
146// << "\t" << std::sqrt(sqr(impactX)+sqr(impactY))/fermi <<G4endl;
147
148 }
149
150}
151
152
153// Implementation (private) methods
154
155
156
157
158
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