source: trunk/source/geometry/magneticfield/src/G4FieldTrack.cc @ 1228

Last change on this file since 1228 was 921, checked in by garnier, 15 years ago

en test de gl2ps. Problemes de libraries

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27// $Id: G4FieldTrack.cc,v 1.14 2007/10/03 15:34:42 japost Exp $
28// GEANT4 tag $Name: geant4-09-02-cand-01 $
29//
30// -------------------------------------------------------------------
31
32#include "G4FieldTrack.hh"
33
34std::ostream& operator<<( std::ostream& os, const G4FieldTrack& SixVec)
35{
36     const G4double *SixV = SixVec.SixVector;
37     os << " ( ";
38     os << " X= " << SixV[0] << " " << SixV[1] << " " << SixV[2] << " ";  // Position
39     os << " V= " << SixV[3] << " " << SixV[4] << " " << SixV[5] << " ";  // Momentum
40     os << " v2= " << G4ThreeVector(SixV[3], SixV[4], SixV[5]).mag();     // mom magnitude
41     os << " mdm= " << SixVec.fMomentumDir.mag(); 
42     os << " l= " << SixVec.GetCurveLength();
43     os << " ) ";
44     return os;
45}
46
47G4FieldTrack::G4FieldTrack( const G4ThreeVector& pPosition, 
48                                  G4double       LaboratoryTimeOfFlight,
49                            const G4ThreeVector& pMomentumDirection,
50                                  G4double       kineticEnergy,
51                                  G4double       restMass_c2,
52                                  G4double       charge, 
53                            const G4ThreeVector& Spin,
54                                  G4double       magnetic_dipole_moment,
55                                  G4double       curve_length )
56 : fKineticEnergy(kineticEnergy),
57   fRestMass_c2(restMass_c2),
58   fLabTimeOfFlight(LaboratoryTimeOfFlight), 
59   // fProperTimeOfFlight(0.0),
60   // fMomentumDir(pMomentumDirection),
61   fChargeState(  charge, magnetic_dipole_moment ) 
62{
63  G4double momentum  = std::sqrt(kineticEnergy*kineticEnergy
64                            +2.0*restMass_c2*kineticEnergy);
65
66  G4ThreeVector pMomentum= momentum * pMomentumDirection; 
67  SetCurvePnt( pPosition, pMomentum, curve_length );
68  // Sets momentum direction as well.
69
70  // Set the momentum direction again - keeping value from argument exactly
71  fMomentumDir=pMomentumDirection; 
72
73  InitialiseSpin( Spin ); 
74
75  // fpChargeState = new G4ChargeState( charge, magnetic_dipole_moment );
76}
77
78G4FieldTrack::G4FieldTrack( const G4ThreeVector& pPosition, 
79                            const G4ThreeVector& pMomentumDirection,   
80                                  G4double       curve_length, 
81                                  G4double       kineticEnergy,
82                            const G4double       restMass_c2,
83                                  G4double,   // velocity
84                                  G4double       pLaboratoryTimeOfFlight,
85                                  G4double       pProperTimeOfFlight,
86                            const G4ThreeVector* pSpin)
87 : fKineticEnergy(kineticEnergy),
88   fRestMass_c2(restMass_c2),
89   fLabTimeOfFlight(pLaboratoryTimeOfFlight), 
90   fProperTimeOfFlight(pProperTimeOfFlight),
91   // fMomentumDir(pMomentumDirection),
92   fChargeState( DBL_MAX ) //  charge not set
93{
94  G4double momentum  = std::sqrt(kineticEnergy*kineticEnergy
95                            +2.0*restMass_c2*kineticEnergy);
96  G4ThreeVector pMomentum= momentum * pMomentumDirection; 
97
98  SetCurvePnt( pPosition, pMomentum, curve_length );
99  // Sets momentum direction as well.
100
101  // Set the momentum direction again
102  //   -- to avoid numerical issues from multiplying by momentum and dividing again
103  fMomentumDir=pMomentumDirection; 
104
105  G4ThreeVector Spin(0.0, 0.0, 0.0); 
106  if( !pSpin ) Spin= G4ThreeVector(0.,0.,0.); 
107  else         Spin= *pSpin;
108  InitialiseSpin( Spin ); 
109
110  // fpChargeState = new G4ChargeState( DBL_MAX );  //  charge not yet set !!
111}
112
113G4FieldTrack::G4FieldTrack( char )                  //  Nothing is set !!
114  : fRestMass_c2(0.0), fLabTimeOfFlight(0.0),
115   fChargeState( DBL_MAX ) //  charge not set
116{
117  G4ThreeVector Zero(0.0, 0.0, 0.0);
118  SetCurvePnt( Zero, Zero, 0.0 );
119  InitialiseSpin( Zero ); 
120  // fpChargeState = new G4ChargeState( DBL_MAX );   
121}
122
123void G4FieldTrack::
124     SetChargeAndMoments(G4double charge, 
125                         G4double magnetic_dipole_moment, // default= DBL_MAX - do not change
126                         G4double electric_dipole_moment, //   ditto
127                         G4double magnetic_charge )       //   ditto
128{
129  fChargeState.SetChargeAndMoments( charge,  magnetic_dipole_moment, 
130                      electric_dipole_moment,  magnetic_charge ); 
131
132  // fpChargeState->SetChargeAndMoments( charge,  magnetic_dipole_moment,
133  //          electric_dipole_moment,  magnetic_charge );
134
135  // TO-DO: Improve the implementation using handles
136  //   -- and handle to the old one (which can be shared by other copies) and
137  //      must not be left to hang loose
138  //
139  // fpChargeState= new G4ChargeState(  charge, magnetic_dipole_moment,
140  //                         electric_dipole_moment, magnetic_charge  );
141}
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