Geant4 11.4.0
Toolkit for the simulation of the passage of particles through matter
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G4ErrorCylSurfaceTarget.hh
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25//
26// G4ErrorCylSurfaceTarget
27//
28// Class Description:
29//
30// Limits step when track reaches a cylindrical surface.
31
32// Author: Pedro Arce (CIEMAT), September 2004
33// --------------------------------------------------------------------
34#ifndef G4ERRORCYLSURFACETARGET_HH
35#define G4ERRORCYLSURFACETARGET_HH
36
37#include "globals.hh"
39#include "G4ThreeVector.hh"
40#include "G4RotationMatrix.hh"
41#include "G4AffineTransform.hh"
42#include "G4Plane3D.hh"
43
44/**
45 * @brief G4ErrorCylSurfaceTarget is a utility class for limiting
46 * the step when a track reaches a cylindrical surface.
47 */
48
50{
51 public:
52
53 /**
54 * Constructor for G4ErrorCylSurfaceTarget. It constructs a cylindrical
55 * surface by radius, translation and rotation.
56 * @param[in] radius Cylinder radius.
57 * @param[in] trans Translation vector.
58 * @param[in] rotm Rotation matrix.
59 */
60 G4ErrorCylSurfaceTarget( const G4double& radius,
61 const G4ThreeVector& trans = G4ThreeVector(),
62 const G4RotationMatrix& rotm = G4RotationMatrix() );
63
64 /**
65 * Constructor for G4ErrorCylSurfaceTarget. It constructs a cylindrical
66 * surface by radius and affine transformation.
67 * @param[in] radius Cylinder radius.
68 * @param[in] trans The affine transformation in input.
69 */
70 G4ErrorCylSurfaceTarget( const G4double& radius,
71 const G4AffineTransform& trans );
72
73 /**
74 * Default Destructor.
75 */
76 ~G4ErrorCylSurfaceTarget() override = default;
77
78 /**
79 * Intersects the cylindrical surface with the line in local (cylinder)
80 * coordinates, given by point and direction.
81 * @param[in] point The point of reference.
82 * @param[in] direc The direction vector.
83 * @returns The intersection point.
84 */
86 const G4ThreeVector& direc ) const;
87
88 /**
89 * Computes the distance from a point to the cylindrical surface in a
90 * given direction.
91 * @param[in] point The point of reference.
92 * @param[in] direc The direction vector.
93 * @returns The distance value.
94 */
96 const G4ThreeVector& direc ) const override;
97
98 /**
99 * Computes the minimal distance from a point to the cylindrical surface
100 * in any direction.
101 * @param[in] point The point of reference.
102 * @returns The distance value.
103 */
104 G4double GetDistanceFromPoint( const G4ThreeVector& point ) const override;
105
106 /**
107 * Computes the plane tangent to cylindrical surface at a given point.
108 * @param[in] point The point of reference.
109 * @returns The tangent plane.
110 */
111 G4Plane3D GetTangentPlane( const G4ThreeVector& point ) const override;
112
113 /**
114 * Dumps to standard output the cylindrical surface parameters.
115 */
116 void Dump( const G4String& msg ) const override;
117
118 private:
119
120 G4double fradius;
121 G4AffineTransform ftransform;
122};
123
124#endif
HepGeom::Plane3D< G4double > G4Plane3D
Definition G4Plane3D.hh:34
CLHEP::HepRotation G4RotationMatrix
CLHEP::Hep3Vector G4ThreeVector
double G4double
Definition G4Types.hh:83
G4AffineTransform is a class for geometric affine transformations. It supports efficient arbitrary ro...
G4double GetDistanceFromPoint(const G4ThreeVector &point, const G4ThreeVector &direc) const override
G4Plane3D GetTangentPlane(const G4ThreeVector &point) const override
~G4ErrorCylSurfaceTarget() override=default
G4ErrorCylSurfaceTarget(const G4double &radius, const G4ThreeVector &trans=G4ThreeVector(), const G4RotationMatrix &rotm=G4RotationMatrix())
void Dump(const G4String &msg) const override
G4ThreeVector IntersectLocal(const G4ThreeVector &point, const G4ThreeVector &direc) const
G4ErrorSurfaceTarget()=default