source: trunk/examples/extended/parallel/MPI/exMPI02/src/MedicalBeam.cc @ 807

Last change on this file since 807 was 807, checked in by garnier, 16 years ago

update

File size: 4.5 KB
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25//
26// $Id: MedicalBeam.cc,v 1.1 2007/11/16 14:29:33 kmura Exp $
27// $Name:  $
28// ====================================================================
29//   MedicalBeam.cc
30//
31//                                         2005 Q
32// ====================================================================
33#include "MedicalBeam.hh"
34#include "Randomize.hh"
35#include "G4Event.hh"
36#include "G4ParticleTable.hh"
37#include "G4PrimaryVertex.hh"
38
39using namespace CLHEP;
40
41#include <cmath>
42
43// ====================================================================
44//
45// class description
46//
47// ====================================================================
48
49///////////////////////////////////
50MedicalBeam::MedicalBeam()
51  : particle(0), 
52    kineticE(1.*MeV),
53    sourcePosition(G4ThreeVector()),
54    SSD(1.*m), 
55    fieldShape(MedicalBeam::SQUARE),
56    fieldR(10.*cm)
57///////////////////////////////////
58{
59
60  G4ParticleTable* particleTable= G4ParticleTable::GetParticleTable();
61  particle= particleTable-> FindParticle("proton");
62
63  kineticE= 200.*MeV;
64  sourcePosition= G4ThreeVector(0.,0.,-125.*cm);
65  SSD= 100.*cm;
66  fieldXY[0]= fieldXY[1]= 5.*cm;
67}
68
69
70///////////////////////////
71MedicalBeam::~MedicalBeam()
72///////////////////////////
73{
74}
75
76
77////////////////////////////////////////////////////////
78G4ThreeVector MedicalBeam::GenerateBeamDirection() const
79////////////////////////////////////////////////////////
80{
81  // uniform distribution in a limitted solid angle
82  G4double dr;
83  if(fieldShape == MedicalBeam::SQUARE) {
84    dr= std::sqrt(sqr(fieldXY[0]/2.)+sqr(fieldXY[1]/2.));
85  } else {
86    dr= fieldR;
87  }
88
89  G4double sin0= dr/SSD;
90  G4double cos0= std::sqrt(1.-sqr(sin0));
91
92  G4double dcos=0.;
93  G4double dsin, dphi, z;
94
95  G4double x= DBL_MAX;
96  G4double y= DBL_MAX;
97
98  G4double xmax, ymax;
99  if(fieldShape == MedicalBeam::SQUARE) {
100    xmax= fieldXY[0]/2./SSD;
101    ymax= fieldXY[1]/2./SSD;
102  } else {
103    xmax= ymax= DBL_MAX-1.;
104  }
105
106  while(! (std::abs(x)< xmax && std::abs(y)< ymax) ) {
107    dcos= RandFlat::shoot(cos0, 1.);
108    dsin= std::sqrt(1.-sqr(dcos));
109    dphi= RandFlat::shoot(0., twopi);
110
111    x= std::cos(dphi)*dsin*dcos;
112    y= std::sin(dphi)*dsin*dcos;
113  }
114  z= dcos;
115
116  return G4ThreeVector(x,y,z);
117}
118
119
120/////////////////////////////////////////////////////
121void MedicalBeam::GeneratePrimaries(G4Event* anEvent)
122/////////////////////////////////////////////////////
123{
124  if(particle==0) return;
125
126  // create a new vertex
127  G4PrimaryVertex* vertex= new G4PrimaryVertex(sourcePosition, 0.*ns);
128
129  // momentum
130  G4double mass= particle-> GetPDGMass();
131  G4double p= std::sqrt(sqr(mass+kineticE)-sqr(mass));
132  G4ThreeVector pmon= p*GenerateBeamDirection();
133  G4PrimaryParticle* primary= new G4PrimaryParticle(particle, 
134                                                    pmon.x(), 
135                                                    pmon.y(), 
136                                                    pmon.z());
137  // set primary to vertex
138  vertex-> SetPrimary(primary);
139
140  // set vertex to event
141  anEvent-> AddPrimaryVertex(vertex);
142}
143
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