Geant4 9.6.0
Toolkit for the simulation of the passage of particles through matter
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G4EqEMFieldWithSpin.hh
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26//
27// $Id$
28//
29//
30// class G4EqEMFieldWithSpin
31//
32// Class description:
33//
34// This is the right-hand side of equation of motion in a combined
35// electric and magnetic field.
36
37// History:
38// - Created. Chris Gong, P.Gumplinger, 30.08.2007
39// -------------------------------------------------------------------
40
41#ifndef G4EQEMFIELDWITHSPIN_hh
42#define G4EQEMFIELDWITHSPIN_hh
43
44#include "G4EquationOfMotion.hh"
45
47
49{
50 public: // with description
51
53
55
56 void SetChargeMomentumMass(G4double particleCharge, // in e+ units
57 G4double MomentumXc,
58 G4double mass);
59
60 void EvaluateRhsGivenB(const G4double y[],
61 const G4double Field[],
62 G4double dydx[] ) const;
63 // Given the value of the electromagnetic field, this function
64 // calculates the value of the derivative dydx.
65
66 inline void SetAnomaly(G4double a) { anomaly = a; }
67 inline G4double GetAnomaly() const { return anomaly; }
68 // set/get magnetic anomaly
69
70 private:
71
72 G4double fElectroMagCof ;
73 G4double fMassCof;
74 G4double omegac;
75 G4double anomaly;
76 G4double pcharge;
77 G4double E;
78 G4double gamma;
79 G4double beta;
80
81};
82
83#endif /* G4EQEMFIELDWITHSPIN */
double G4double
Definition: G4Types.hh:64
void SetAnomaly(G4double a)
void EvaluateRhsGivenB(const G4double y[], const G4double Field[], G4double dydx[]) const
G4double GetAnomaly() const
void SetChargeMomentumMass(G4double particleCharge, G4double MomentumXc, G4double mass)