source: trunk/source/geometry/magneticfield/include/G4MagHelicalStepper.hh@ 1347

Last change on this file since 1347 was 1337, checked in by garnier, 15 years ago

tag geant4.9.4 beta 1 + modifs locales

File size: 5.1 KB
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[831]1//
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25//
26//
27//
28// $Id: G4MagHelicalStepper.hh,v 1.15 2007/08/21 08:48:28 tnikitin Exp $
[1337]29// GEANT4 tag $Name: geant4-09-04-beta-01 $
[831]30//
31//
32//
33// class G4MagHelicalStepper
34//
35// Class description:
36//
37// Abstract base class for integrator of particle's equation of motion,
38// used in tracking in space dependent magnetic field
39
40// History:
41// - 05.11.98 J.Apostolakis Creation of new ABC
42// --------------------------------------------------------------------
43
44#ifndef G4MagHelicalStepper_hh
45#define G4MagHelicalStepper_hh
46
47#include "G4Types.hh"
48#include "G4MagIntegratorStepper.hh"
49#include "G4Mag_EqRhs.hh"
50#include "G4ThreeVector.hh"
51
52class G4MagHelicalStepper : public G4MagIntegratorStepper
53{
54 public: // with description
55
56 G4MagHelicalStepper(G4Mag_EqRhs *EqRhs);
57 virtual ~G4MagHelicalStepper();
58
59 virtual void Stepper( const G4double y[], // VIRTUAL for ExactHelix - temporary
60 const G4double dydx[],
61 G4double h,
62 G4double yout[],
63 G4double yerr[] );
64 // The stepper for the Runge Kutta integration.
65 // The stepsize is fixed, equal to h.
66 // Integrates ODE starting values y[0 to 6]
67 // Outputs yout[] and its estimated error yerr[].
68
69 virtual void DumbStepper( const G4double y[],
70 G4ThreeVector Bfld,
71 G4double h,
72 G4double yout[] ) = 0;
73 // Performs a 'dump' Step without error calculation.
74
75 G4double DistChord()const ;
76 // Estimate maximum distance of curved solution and chord ...
77
78 protected: // with description
79
80 inline void LinearStep( const G4double yIn[],
81 G4double h,
82 G4double yHelix[]) const;
83 // A linear Step in regions without magnetic field.
84
85 void AdvanceHelix( const G4double yIn[],
86 G4ThreeVector Bfld,
87 G4double h,
88 G4double yHelix[],G4double yHelix2[]=0); // output
89 // A first order Step along a helix inside the field.
90
91 inline void MagFieldEvaluate( const G4double y[], G4ThreeVector& Bfield );
92 // Evaluate the field at a certain point.
93
94
95 inline G4double GetInverseCurve( const G4double Momentum, const G4double Bmag );
96 // Evaluate Inverse of Curvature of Track
97
98 // Store and use the parameters of track :
99 // Radius of curve, Stepping angle, Radius of projected helix
100 inline void SetAngCurve(const G4double Ang);
101 inline G4double GetAngCurve()const;
102
103 inline void SetCurve(const G4double Curve);
104 inline G4double GetCurve()const;
105
106 inline void SetRadHelix(const G4double Rad);
107 inline G4double GetRadHelix()const;
108
109
110 protected: // without description
111
112 // void MagFieldEvaluate( const G4double y[], G4double B[] )
113 // { GetEquationOfMotion()-> GetFieldValue(y, B); }
114
115 private:
116
117 G4MagHelicalStepper(const G4MagHelicalStepper&);
118 G4MagHelicalStepper& operator=(const G4MagHelicalStepper&);
119 // Private copy constructor and assignment operator.
120
121 static const G4double fUnitConstant; // As in G4Mag_EqRhs.hh/cc where it is not used.
122 private:
123
124 G4Mag_EqRhs* fPtrMagEqOfMot;
125
126 // Data stored in order to find the chord.
127 G4double fAngCurve;
128 G4double frCurve;
129 G4double frHelix;
130 // Data stored in order to find the chord.
131 G4ThreeVector yInitial, yMidPoint, yFinal;
132
133
134};
135
136#include "G4MagHelicalStepper.icc"
137
138#endif /* G4MagHelicalStepper_hh */
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