source: trunk/source/processes/hadronic/models/parton_string/diffraction/src/G4FTFParticipants.cc @ 1347

Last change on this file since 1347 was 1347, checked in by garnier, 13 years ago

geant4 tag 9.4

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26//
27// $Id: G4FTFParticipants.cc,v 1.17 2010/09/20 15:50:46 vuzhinsk Exp $
28// GEANT4 tag $Name: geant4-09-04-ref-00 $
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 "G4FTFParameters.hh"                            // Uzhi 29.03.08
41#include "G4FTFParticipants.hh"
42#include "G4DiffractiveSplitableHadron.hh"
43#include "G4VSplitableHadron.hh"
44#include "Randomize.hh"
45#include <utility>                                        // Uzhi 29.03.08
46
47// Class G4FTFParticipants
48
49G4FTFParticipants::G4FTFParticipants() 
50{
51}
52
53G4FTFParticipants::G4FTFParticipants(const G4FTFParticipants &): G4VParticipants()
54{
55}
56
57
58G4FTFParticipants::~G4FTFParticipants()
59{
60}
61
62
63//const G4FTFParticipants & G4FTFParticipants::operator=(const G4FTFParticipants &right)
64//{}
65
66
67//int G4FTFParticipants::operator==(const G4FTFParticipants &right) const
68//{}
69
70//int G4FTFParticipants::operator!=(const G4FTFParticipants &right) const
71//{}
72
73void G4FTFParticipants::GetList(const G4ReactionProduct  &thePrimary,
74                                      G4FTFParameters    *theParameters) 
75{
76   
77    StartLoop();  // reset Loop over Interactions
78
79    for(unsigned int i=0; i<theInteractions.size(); i++) delete theInteractions[i];
80    theInteractions.clear();
81
82    G4double deltaxy=2 * fermi;                       // Extra nuclear radius
83
84    G4VSplitableHadron * primarySplitable=new G4DiffractiveSplitableHadron(thePrimary);
85
86    G4double xyradius;                         
87    xyradius =theNucleus->GetOuterRadius() + deltaxy; // Impact parameter sampling
88                                                      // radius
89//    G4bool nucleusNeedsShift = true;                // Uzhi 20 July 2009
90   
91    while ( theInteractions.size() == 0 )
92    {
93        std::pair<G4double, G4double> theImpactParameter;
94        theImpactParameter = theNucleus->ChooseImpactXandY(xyradius);
95        G4double impactX = theImpactParameter.first; 
96        G4double impactY = theImpactParameter.second;
97
98        G4ThreeVector thePosition(impactX, impactY, -DBL_MAX);     
99        primarySplitable->SetPosition(thePosition);               
100
101        theNucleus->StartLoop();
102        G4Nucleon * nucleon;
103
104        while ( (nucleon=theNucleus->GetNextNucleon()) ) 
105        {
106           G4double impact2= sqr(impactX - nucleon->GetPosition().x()) +
107                             sqr(impactY - nucleon->GetPosition().y());
108
109           if ( theParameters->GetProbabilityOfInteraction(impact2/fermi/fermi) 
110                > G4UniformRand() )
111           {
112                primarySplitable->SetStatus(1);        // It takes part in the interaction
113
114                G4VSplitableHadron * targetSplitable=0;
115                if ( ! nucleon->AreYouHit() )
116                {
117                    targetSplitable= new G4DiffractiveSplitableHadron(*nucleon);
118                    nucleon->Hit(targetSplitable);
119                    nucleon->SetBindingEnergy(3.*nucleon->GetBindingEnergy()); 
120                    targetSplitable->SetStatus(1);     // It takes part in the interaction
121                }
122                G4InteractionContent * aInteraction = 
123                                       new G4InteractionContent(primarySplitable);
124                aInteraction->SetTarget(targetSplitable);
125                aInteraction->SetTargetNucleon(nucleon);     // Uzhi 16.07.09
126                theInteractions.push_back(aInteraction);
127           }
128        }   
129
130//      G4cout << "Number of Hit nucleons " << theInteractions.size()<<G4endl; //  entries()
131//              << "\t" << impactX/fermi << "\t"<<impactY/fermi
132//              << "\t" << std::sqrt(sqr(impactX)+sqr(impactY))/fermi <<G4endl;
133
134    }
135   
136}
137
138
139// Implementation (private) methods
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