source: trunk/source/materials/include/G4NistMaterialBuilder.hh@ 1318

Last change on this file since 1318 was 1315, checked in by garnier, 15 years ago

update geant4-09-04-beta-cand-01 interfaces-V09-03-09 vis-V09-03-08

File size: 7.3 KB
Line 
1//
2// ********************************************************************
3// * License and Disclaimer *
4// * *
5// * The Geant4 software is copyright of the Copyright Holders of *
6// * the Geant4 Collaboration. It is provided under the terms and *
7// * conditions of the Geant4 Software License, included in the file *
8// * LICENSE and available at http://cern.ch/geant4/license . These *
9// * include a list of copyright holders. *
10// * *
11// * Neither the authors of this software system, nor their employing *
12// * institutes,nor the agencies providing financial support for this *
13// * work make any representation or warranty, express or implied, *
14// * regarding this software system or assume any liability for its *
15// * use. Please see the license in the file LICENSE and URL above *
16// * for the full disclaimer and the limitation of liability. *
17// * *
18// * This code implementation is the result of the scientific and *
19// * technical work of the GEANT4 collaboration. *
20// * By using, copying, modifying or distributing the software (or *
21// * any work based on the software) you agree to acknowledge its *
22// * use in resulting scientific publications, and indicate your *
23// * acceptance of all terms of the Geant4 Software license. *
24// ********************************************************************
25//
26// $Id: G4NistMaterialBuilder.hh,v 1.16 2010/04/29 11:11:56 vnivanch Exp $
27// GEANT4 tag $Name: geant4-09-04-beta-cand-01 $
28
29#ifndef G4NistMaterialBuilder_h
30#define G4NistMaterialBuilder_h 1
31
32//---------------------------------------------------------------------------
33//
34// ClassName: G4NistMaterialBuilder
35//
36// Description: Utility class to hold and manipulate G4Materials
37//
38// Author: V.Ivanchenko 21.11.2004
39//
40// Modifications:
41// 31.10.05 Add chemical effect and gas properties (V.Ivanchenko)
42// 27.02.06 V.Ivanchneko add ConstructNewGasMaterial
43// 11.05.06 V.Ivanchneko add warning flag to FindOrBuildMaterial method
44// 27.07.06 V.Ivanchneko set defaul warning=true for FindOrBuildMaterial
45// 27.07.07 V.Ivanchneko add matIndex vector to control built materials
46// 28.07.07 V.Ivanchneko add BuildMaterial method using Nist index
47// 29.04.10 V.Ivanchneko add GetMeanIonisationEnergy method using Nist index
48//
49//----------------------------------------------------------------------------
50//
51// Class Description:
52//
53// Element data from the NIST DB on Atomic Weights and Isotope Compositions
54// http://physics.nist.gov/PhysRefData/Compositions/index.html
55//
56
57//....oooOO0OOooo........oooOO0OOooo........oooOO0OOooo........oooOO0OOooo......
58
59#include "globals.hh"
60#include "G4Material.hh"
61#include <vector>
62
63//....oooOO0OOooo........oooOO0OOooo........oooOO0OOooo........oooOO0OOooo......
64
65class G4NistElementBuilder;
66
67class G4NistMaterialBuilder
68{
69public:
70
71 G4NistMaterialBuilder(G4NistElementBuilder*, G4int verb=0);
72
73 ~G4NistMaterialBuilder();
74
75 // Find or build a G4Material by name, from dataBase
76 //
77 G4Material* FindOrBuildMaterial (const G4String& name,
78 G4bool isotopes=true,
79 G4bool warning=true);
80
81 // construct a G4Material from scratch by atome count
82 //
83 G4Material* ConstructNewMaterial (const G4String& name,
84 const std::vector<G4String>& elm,
85 const std::vector<G4int>& nbAtoms,
86 G4double dens,
87 G4bool isotopes=true,
88 G4State state = kStateSolid,
89 G4double temp = STP_Temperature,
90 G4double pressure = STP_Pressure);
91
92 // construct a G4Material from scratch by fraction mass
93 //
94 G4Material* ConstructNewMaterial (const G4String& name,
95 const std::vector<G4String>& elm,
96 const std::vector<G4double>& weight,
97 G4double dens,
98 G4bool isotopes=true,
99 G4State state = kStateSolid,
100 G4double temp = STP_Temperature,
101 G4double pressure = STP_Pressure);
102
103
104 // construct a gas G4Material from scratch by atome count
105 //
106 G4Material* ConstructNewGasMaterial(const G4String& name,
107 const G4String& nameNist,
108 G4double temp, G4double pres,
109 G4bool isotopes=true);
110
111 // verbosity level defined by G4NistManager
112 //
113 void SetVerbose(G4int val);
114
115 // cout predefined materials:
116 // "simple" - only pure materials in basic state (Z = 1, ..., 98)
117 // "compound" - NIST compounds
118 // "hep" - HEP materials and compounds
119 // "all" - all
120 //
121 void ListMaterials(const G4String&);
122
123 // cout lists of predefined materials
124 //
125 void ListNistSimpleMaterials();
126 void ListNistCompoundMaterials();
127 void ListHepMaterials();
128 void ListSpaceMaterials();
129
130 // access to the list of names of Geant4 predefined materials
131 //
132 const std::vector<G4String>& GetMaterialNames() const;
133
134 // access to the NIST mean ionisation potentials
135 //
136 inline G4double GetMeanIonisationEnergy(G4int index) const;
137
138private:
139
140 void Initialise();
141 void NistSimpleMaterials();
142 void NistCompoundMaterials();
143 void HepAndNuclearMaterials();
144 void SpaceMaterials();
145
146 // add parameters of material from NIST DB to internal vectors
147 // density in g/cm3, mean ionisation potential in eV
148 //
149 void AddMaterial(const G4String& nameMat, G4double dens, G4int Z=0,
150 G4double pot=0.0, G4int ncomp=1,
151 G4State=kStateSolid,
152 G4double temp=STP_Temperature,
153 G4double pres=STP_Pressure);
154
155 void AddChemicalFormula(const G4String& nameMat, const G4String& ch);
156 void AddGas(const G4String& nameMat, G4double t=STP_Temperature,
157 G4double p=STP_Pressure);
158
159 void AddElementByWeightFraction(G4int Z, G4double);
160 void AddElementByAtomCount (G4int Z, G4int);
161
162 void AddElementByWeightFraction(const G4String& name, G4double);
163 void AddElementByAtomCount (const G4String& name, G4int);
164
165 // build a G4Material from dataBase
166 G4Material* BuildMaterial(const G4String& name, G4bool isotopes);
167 G4Material* BuildMaterial(G4int idx, G4bool isotopes);
168
169 void DumpElm(G4int);
170 void DumpMix(G4int);
171
172private:
173
174 G4NistElementBuilder* elmBuilder;
175
176 G4int verbose;
177 G4int nMaterials;
178 G4int nComponents;
179 G4int nCurrent;
180 G4int nElementary;
181 G4int nNIST;
182 G4int nHEP;
183
184 std::vector<G4String> names;
185 std::vector<G4String> chFormulas;
186
187 std::vector<G4double> densities;
188 std::vector<G4double> ionPotentials;
189 std::vector<G4State> states;
190 std::vector<G4double> fractions;
191 std::vector<G4int> components;
192 std::vector<G4int> indexes;
193 std::vector<G4int> elements;
194
195 std::vector<G4int> matIndex;
196
197 std::vector<G4double> temperatures;
198 std::vector<G4double> presures;
199
200 G4bool first;
201
202};
203
204inline const std::vector<G4String>&
205 G4NistMaterialBuilder::GetMaterialNames() const
206{
207 return names;
208}
209
210inline G4double
211G4NistMaterialBuilder::GetMeanIonisationEnergy(G4int index) const
212{
213 G4double res = 10*index;
214 if(index >= 0 && index < nMaterials) { res = ionPotentials[index]; }
215 return res;
216}
217
218#endif
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