Geant4 10.7.0
Toolkit for the simulation of the passage of particles through matter
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G4ExtDEDXTable.hh
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1//
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25//
26//
27// ===========================================================================
28// GEANT4 class header file
29//
30// Class: G4ExtDEDXTable
31//
32// Base class: G4VIonDEDXTable
33//
34// Author: Anton Lechner ([email protected])
35//
36// First implementation: 29. 02. 2009
37//
38// Modifications:
39// 03.11.2009 A. Lechner: Added new methods BuildPhysicsVector according
40// to interface changes in base class G4VIonDEDXTable.
41//
42//
43// Class description:
44// Utility class for users to add their own electronic stopping powers
45// for ions. This class is dedicated for use with G4IonParametrisedLossModel
46// of the low-energy electromagnetic package.
47//
48// Comments:
49//
50// ===========================================================================
51//
52
53#ifndef G4EXTDEDXTABLE_HH
54#define G4EXTDEDXTABLE_HH
55
56#include "globals.hh"
57#include "G4VIonDEDXTable.hh"
58#include <utility>
59#include <vector>
60#include <map>
61
62
64
65 public:
66 explicit G4ExtDEDXTable();
67 virtual ~G4ExtDEDXTable();
68
69 virtual G4bool BuildPhysicsVector(G4int ionZ,
70 const G4String& matName);
71
72 virtual G4bool BuildPhysicsVector(G4int ionZ,
73 G4int matZ);
74
75 // Function for checking the availability of stopping power tables
76 // for a given ion-material couple, where the material consists of
77 // a single element only.
78 virtual G4bool IsApplicable(
79 G4int atomicNumberIon, // Atomic number of ion
80 G4int atomicNumberElem // Atomic number of elemental material
81 );
82
83 // Function for checking the availability of stopping power tables
84 // for given ion-material couples.
85 virtual G4bool IsApplicable(
86 G4int atomicNumberIon, // Atomic number of ion
87 const G4String& matIdentifier // Name or chemical formula of material
88 );
89
90 // Function returning the stopping power vector for given ion-material
91 // couples, where the material consists of a single element only.
93 G4int atomicNumberIon, // Atomic number of ion
94 G4int atomicNumberElem // Atomic number of elemental material
95 );
96
97 // Function returning the stopping power vector for given ion-material
98 // couples.
100 G4int atomicNumberIon, // Atomic number of ion
101 const G4String& matIdenfier // Name or chemical formula of material
102 );
103
104 // Function returning the stopping power value for given ion-material
105 // couples, where the material consists of a single element only, and
106 // given energy.
108 G4double kinEnergyPerNucleon, // Kinetic energy per nucleon
109 G4int atomicNumberIon, // Atomic number of ion
110 G4int atomicNumberElem // Atomic number of elemental material
111 );
112
113 // Function returning the stopping power value for given ion-material
114 // couples and given energy.
116 G4double kinEnergyPerNucleon, // Kinetic energy per nucleon
117 G4int atomicNumberIon, // Atomic number of ion
118 const G4String& matIdenfier // Name or chemical formula of material
119 );
120
121 // Function for adding dE/dx vector for an elemental materials. The last
122 // argument only applies to elemental materials.
124 G4PhysicsVector* physicsVector, // Physics vector
125 G4int atomicNumberIon, // Atomic number of ion
126 const G4String& matIdenfier, // Name or chemical formula of material
127 G4int atomicNumberElem = 0 // Atomic number of elemental material
128 );
129
130 // Function for removing dE/dx vector for a compound materials
132 G4int atomicNumberIon, // Atomic number of ion
133 const G4String& matIdentifier // Name or chemical formula of material
134 );
135
136 // Function writing all stopping power vectors to file
138 const G4String& fileName // File name
139 );
140
141 // Function retrieving all stopping power vectors from file
143 const G4String& fileName // File name
144 );
145
146 // Function deleting all physics vectors and clearing the maps
147 void ClearTable();
148
149 // Function printing the ion-material pairs of available vectors to stdout
150 void DumpMap();
151
152 private:
153
155 const G4ExtDEDXTable & operator=(const G4ExtDEDXTable&) = delete;
156
157 G4PhysicsVector* CreatePhysicsVector(G4int vectorType);
158
159 G4int FindAtomicNumberElement(G4PhysicsVector* physicsVector);
160
161 typedef std::pair<G4int, G4int> G4IonDEDXKeyElem;
162 typedef std::pair<G4int, G4String> G4IonDEDXKeyMat;
163
164 typedef std::map<G4IonDEDXKeyElem, G4PhysicsVector*> G4IonDEDXMapElem;
165 typedef std::map<G4IonDEDXKeyMat, G4PhysicsVector*> G4IonDEDXMapMat;
166
167 G4IonDEDXMapElem dedxMapElements;
168 G4IonDEDXMapMat dedxMapMaterials;
169};
170
171#endif // G4EXTDEDXTABLE_HH
double G4double
Definition: G4Types.hh:83
bool G4bool
Definition: G4Types.hh:86
int G4int
Definition: G4Types.hh:85
virtual G4PhysicsVector * GetPhysicsVector(G4int atomicNumberIon, G4int atomicNumberElem)
virtual G4bool BuildPhysicsVector(G4int ionZ, const G4String &matName)
virtual G4bool IsApplicable(G4int atomicNumberIon, G4int atomicNumberElem)
G4double GetDEDX(G4double kinEnergyPerNucleon, G4int atomicNumberIon, G4int atomicNumberElem)
G4bool StorePhysicsTable(const G4String &fileName)
G4bool RemovePhysicsVector(G4int atomicNumberIon, const G4String &matIdentifier)
G4bool AddPhysicsVector(G4PhysicsVector *physicsVector, G4int atomicNumberIon, const G4String &matIdenfier, G4int atomicNumberElem=0)
virtual ~G4ExtDEDXTable()
G4bool RetrievePhysicsTable(const G4String &fileName)