source: trunk/source/geometry/magneticfield/src/G4MonopoleEq.cc@ 1284

Last change on this file since 1284 was 1274, checked in by garnier, 16 years ago

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[1274]1//
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25//
26//
27// $Id: G4MonopoleEq.cc,v 1.1 2009/11/17 09:53:03 grichine Exp $
28// GEANT4 tag $Name: $
29//
30//
31// This is the standard right-hand side for equation of motion.
32//
33// d(p_c)/ds=g{c-energyB_ - p_c x E}/pc
34//
35// The only case another is required is when using a moving reference
36// frame ... or extending the class to include additional Forces,
37// eg an electric field
38//
39// 17.11.09 V.Grichine
40//
41// -------------------------------------------------------------------
42
43#include "G4MonopoleEq.hh"
44#include "globals.hh"
45
46void
47G4MonopoleEq::SetChargeMomentumMass(G4double particleCharge, // e+ units
48 G4double,
49 G4double particleMass)
50{
51 fElectroMagCof = eplus*particleCharge; // no *c_light as for ususal q
52 fElectroMagCof /= 2*fine_structure_const;
53
54 fMassCof = particleMass*particleMass ;
55}
56
57
58
59void
60G4MonopoleEq::EvaluateRhsGivenB(const G4double y[],
61 const G4double Field[],
62 G4double dydx[] ) const
63{
64
65 // Components of y:
66 // 0-2 dr/ds,
67 // 3-5 dpc/ds - momentum derivatives
68
69 G4double pSquared = y[3]*y[3] + y[4]*y[4] + y[5]*y[5] ;
70
71 G4double Energy = std::sqrt( pSquared + fMassCof );
72 G4double cof2 = Energy*c_light ;
73
74 G4double pModuleInverse = 1.0/std::sqrt(pSquared) ;
75
76 // G4double inverse_velocity = Energy * c_light * pModuleInverse;
77 G4double inverse_velocity = Energy * pModuleInverse / c_light;
78
79 G4double cof1 = fElectroMagCof*pModuleInverse ;
80
81 // G4double vDotE = y[3]*Field[3] + y[4]*Field[4] + y[5]*Field[5] ;
82
83
84 dydx[0] = y[3]*pModuleInverse ;
85 dydx[1] = y[4]*pModuleInverse ;
86 dydx[2] = y[5]*pModuleInverse ;
87
88 dydx[3] = cof1*(cof2*Field[0] - (y[4]*Field[5] - y[5]*Field[4])) ;
89
90 dydx[4] = cof1*(cof2*Field[1] - (y[5]*Field[3] - y[3]*Field[5])) ;
91
92 dydx[5] = cof1*(cof2*Field[2] - (y[3]*Field[4] - y[4]*Field[3])) ;
93
94 dydx[6] = 0.;//not used
95
96 // Lab Time of flight
97 dydx[7] = inverse_velocity;
98 return ;
99}
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