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G4EqEMFieldWithSpin.hh
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27 // $Id: G4EqEMFieldWithSpin.hh 69699 2013-05-13 08:50:30Z gcosmo $
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 "G4ChargeState.hh"
45 #include "G4EquationOfMotion.hh"
46 
48 
50 {
51  public: // with description
52 
54 
56 
57  void SetChargeMomentumMass(G4ChargeState particleCharge, // in e+ units
58  G4double MomentumXc,
59  G4double mass);
60 
61  void EvaluateRhsGivenB(const G4double y[],
62  const G4double Field[],
63  G4double dydx[] ) const;
64  // Given the value of the electromagnetic field, this function
65  // calculates the value of the derivative dydx.
66 
67  inline void SetAnomaly(G4double a) { anomaly = a; }
68  inline G4double GetAnomaly() const { return anomaly; }
69  // set/get magnetic anomaly
70 
71  private:
72 
73  G4double charge, mass, magMoment, spin;
74 
75  G4double fElectroMagCof ;
76  G4double fMassCof;
77 
78  G4double omegac, anomaly;
79  G4double beta, gamma;
80 
81 };
82 
83 #endif /* G4EQEMFIELDWITHSPIN */
G4double GetAnomaly() const
std::vector< ExP01TrackerHit * > a
Definition: ExP01Classes.hh:33
G4EqEMFieldWithSpin(G4ElectroMagneticField *emField)
void EvaluateRhsGivenB(const G4double y[], const G4double Field[], G4double dydx[]) const
void SetAnomaly(G4double a)
double G4double
Definition: G4Types.hh:76
void SetChargeMomentumMass(G4ChargeState particleCharge, G4double MomentumXc, G4double mass)