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geant4_9_6_p02
source
geometry
magneticfield
include
G4MagHelicalStepper.hh
Go to the documentation of this file.
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// ********************************************************************
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//
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//
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//
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// $Id: G4MagHelicalStepper.hh 69786 2013-05-15 09:38:51Z gcosmo $
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//
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//
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//
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// class G4MagHelicalStepper
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//
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// Class description:
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//
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// Abstract base class for integrator of particle's equation of motion,
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// used in tracking in space dependent magnetic field
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// History:
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// - 05.11.98 J.Apostolakis Creation of new ABC
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// --------------------------------------------------------------------
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#ifndef G4MagHelicalStepper_hh
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#define G4MagHelicalStepper_hh
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#include <
CLHEP/Units/PhysicalConstants.h
>
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#include "
G4Types.hh
"
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#include "
G4MagIntegratorStepper.hh
"
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#include "
G4Mag_EqRhs.hh
"
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#include "
G4ThreeVector.hh
"
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class
G4MagHelicalStepper
:
public
G4MagIntegratorStepper
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{
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public
:
// with description
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G4MagHelicalStepper
(
G4Mag_EqRhs
*EqRhs);
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virtual
~G4MagHelicalStepper
();
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virtual
void
Stepper
(
const
G4double
y
[],
// VIRTUAL for ExactHelix - temporary
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const
G4double
dydx[],
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G4double
h,
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G4double
yout[],
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G4double
yerr[] );
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// The stepper for the Runge Kutta integration.
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// The stepsize is fixed, equal to h.
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// Integrates ODE starting values y[0 to 6]
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// Outputs yout[] and its estimated error yerr[].
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virtual
void
DumbStepper
(
const
G4double
y[],
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G4ThreeVector
Bfld,
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G4double
h,
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G4double
yout[] ) = 0;
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// Performs a 'dump' Step without error calculation.
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G4double
DistChord
()
const
;
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// Estimate maximum distance of curved solution and chord ...
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protected
:
// with description
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inline
void
LinearStep
(
const
G4double
yIn[],
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G4double
h,
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G4double
yHelix[])
const
;
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// A linear Step in regions without magnetic field.
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void
AdvanceHelix
(
const
G4double
yIn[],
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G4ThreeVector
Bfld,
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G4double
h,
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G4double
yHelix[],
G4double
yHelix2[]=0);
// output
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// A first order Step along a helix inside the field.
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inline
void
MagFieldEvaluate
(
const
G4double
y[],
G4ThreeVector
& Bfield );
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// Evaluate the field at a certain point.
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inline
G4double
GetInverseCurve
(
const
G4double
Momentum,
const
G4double
Bmag );
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// Evaluate Inverse of Curvature of Track
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// Store and use the parameters of track :
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// Radius of curve, Stepping angle, Radius of projected helix
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inline
void
SetAngCurve
(
const
G4double
Ang);
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inline
G4double
GetAngCurve
()
const
;
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inline
void
SetCurve
(
const
G4double
Curve);
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inline
G4double
GetCurve
()
const
;
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inline
void
SetRadHelix
(
const
G4double
Rad);
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inline
G4double
GetRadHelix
()
const
;
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protected
:
// without description
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// void MagFieldEvaluate( const G4double y[], G4double B[] )
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// { GetEquationOfMotion()-> GetFieldValue(y, B); }
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private
:
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G4MagHelicalStepper
(
const
G4MagHelicalStepper
&);
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G4MagHelicalStepper
& operator=(
const
G4MagHelicalStepper
&);
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// Private copy constructor and assignment operator.
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static
const
G4double
fUnitConstant;
// As in G4Mag_EqRhs.hh/cc where it is not used.
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private
:
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G4Mag_EqRhs
* fPtrMagEqOfMot;
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// Data stored in order to find the chord.
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G4double
fAngCurve;
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G4double
frCurve;
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G4double
frHelix;
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// Data stored in order to find the chord.
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G4ThreeVector
yInitial, yMidPoint, yFinal;
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};
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#include "G4MagHelicalStepper.icc"
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#endif
/* G4MagHelicalStepper_hh */
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