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Please see the license in the file LICENSE and URL above * 16 // * for the full disclaimer and the limitatio 16 // * for the full disclaimer and the limitation of liability. * 17 // * 17 // * * 18 // * This code implementation is the result 18 // * This code implementation is the result of the scientific and * 19 // * technical work of the GEANT4 collaboratio 19 // * technical work of the GEANT4 collaboration. * 20 // * By using, copying, modifying or distri 20 // * By using, copying, modifying or distributing the software (or * 21 // * any work based on the software) you ag 21 // * any work based on the software) you agree to acknowledge its * 22 // * use in resulting scientific publicati 22 // * use in resulting scientific publications, and indicate your * 23 // * acceptance of all terms of the Geant4 Sof 23 // * acceptance of all terms of the Geant4 Software license. * 24 // ******************************************* 24 // ******************************************************************** 25 // 25 // 26 26 27 #ifndef G4NistMaterialBuilder_h 27 #ifndef G4NistMaterialBuilder_h 28 #define G4NistMaterialBuilder_h 1 28 #define G4NistMaterialBuilder_h 1 29 29 30 //-------------------------------------------- 30 //--------------------------------------------------------------------------- 31 // 31 // 32 // ClassName: G4NistMaterialBuilder 32 // ClassName: G4NistMaterialBuilder 33 // 33 // 34 // Description: Utility class to hold and mani 34 // Description: Utility class to hold and manipulate G4Materials 35 // 35 // 36 // Author: V.Ivanchenko 21.11.2004 36 // Author: V.Ivanchenko 21.11.2004 37 // 37 // 38 // Modifications: 38 // Modifications: 39 // 31.10.05 Add chemical effect and gas proper 39 // 31.10.05 Add chemical effect and gas properties (V.Ivanchenko) 40 // 27.02.06 V.Ivanchneko add ConstructNewGasMa 40 // 27.02.06 V.Ivanchneko add ConstructNewGasMaterial 41 // 11.05.06 V.Ivanchneko add warning flag to F 41 // 11.05.06 V.Ivanchneko add warning flag to FindOrBuildMaterial method 42 // 27.07.06 V.Ivanchneko set defaul warning=tr 42 // 27.07.06 V.Ivanchneko set defaul warning=true for FindOrBuildMaterial 43 // 27.07.07 V.Ivanchneko add matIndex vector t 43 // 27.07.07 V.Ivanchneko add matIndex vector to control built materials 44 // 28.07.07 V.Ivanchneko add BuildMaterial met 44 // 28.07.07 V.Ivanchneko add BuildMaterial method using Nist index 45 // 29.04.10 V.Ivanchneko add GetMeanIonisation 45 // 29.04.10 V.Ivanchneko add GetMeanIonisationEnergy method using Nist index 46 // 09.02.12 P.Gumplinger add ConstructNewIdeal 46 // 09.02.12 P.Gumplinger add ConstructNewIdealGasMaterial 47 // 47 // 48 //-------------------------------------------- 48 //---------------------------------------------------------------------------- 49 // 49 // 50 // Class Description: 50 // Class Description: 51 // 51 // 52 // Element data from the NIST DB on Atomic Wei 52 // Element data from the NIST DB on Atomic Weights and Isotope Compositions 53 // http://physics.nist.gov/PhysRefData/Composi 53 // http://physics.nist.gov/PhysRefData/Compositions/index.html 54 // 54 // 55 55 56 #include "G4Material.hh" << 56 //....oooOO0OOooo........oooOO0OOooo........oooOO0OOooo........oooOO0OOooo...... 57 #include "globals.hh" << 58 57 >> 58 #include <vector> 59 #include <CLHEP/Units/PhysicalConstants.h> 59 #include <CLHEP/Units/PhysicalConstants.h> 60 60 61 #include <vector> << 61 #include "globals.hh" >> 62 #include "G4Material.hh" >> 63 >> 64 //....oooOO0OOooo........oooOO0OOooo........oooOO0OOooo........oooOO0OOooo...... 62 65 63 class G4NistElementBuilder; 66 class G4NistElementBuilder; 64 67 65 class G4NistMaterialBuilder 68 class G4NistMaterialBuilder 66 { 69 { 67 public: << 70 public: 68 G4NistMaterialBuilder(G4NistElementBuilder*, << 69 71 >> 72 G4NistMaterialBuilder(G4NistElementBuilder*, G4int verb=0); >> 73 70 ~G4NistMaterialBuilder() = default; 74 ~G4NistMaterialBuilder() = default; 71 << 75 72 // Find or build a G4Material by name, from 76 // Find or build a G4Material by name, from dataBase 73 inline G4Material* FindMaterial(const G4Stri << 77 // 74 G4Material* FindOrBuildMaterial(const G4Stri << 78 inline G4Material* FindMaterial (const G4String& name) const; 75 << 79 G4Material* FindOrBuildMaterial (const G4String& name, >> 80 G4bool warning = true); >> 81 76 // Find or build a simple material via atomi 82 // Find or build a simple material via atomic number >> 83 // 77 inline G4Material* FindSimpleMaterial(G4int 84 inline G4Material* FindSimpleMaterial(G4int Z) const; 78 G4Material* FindOrBuildSimpleMaterial(G4int 85 G4Material* FindOrBuildSimpleMaterial(G4int Z, G4bool warning); 79 86 80 // construct a G4Material from scratch by at 87 // construct a G4Material from scratch by atome count 81 G4Material* ConstructNewMaterial(const G4Str << 88 // 82 const std::vector<G4int>& nbAtoms, G4doubl << 89 G4Material* ConstructNewMaterial (const G4String& name, 83 G4double temp = NTP_Temperature, G4double << 90 const std::vector<G4String>& elm, >> 91 const std::vector<G4int>& nbAtoms, >> 92 G4double dens, >> 93 G4State state = kStateSolid, >> 94 G4double temp = NTP_Temperature, >> 95 G4double pressure = CLHEP::STP_Pressure); 84 96 85 // construct a G4Material from scratch by fr 97 // construct a G4Material from scratch by fraction mass 86 G4Material* ConstructNewMaterial(const G4Str << 98 // 87 const std::vector<G4double>& weight, G4dou << 99 G4Material* ConstructNewMaterial (const G4String& name, 88 G4double temp = NTP_Temperature, G4double << 100 const std::vector<G4String>& elm, >> 101 const std::vector<G4double>& weight, >> 102 G4double dens, >> 103 G4State state = kStateSolid, >> 104 G4double temp = NTP_Temperature, >> 105 G4double pressure = CLHEP::STP_Pressure); >> 106 89 107 90 // construct a gas G4Material from scratch b 108 // construct a gas G4Material from scratch by atome count 91 G4Material* ConstructNewGasMaterial( << 109 // 92 const G4String& name, const G4String& name << 110 G4Material* ConstructNewGasMaterial(const G4String& name, >> 111 const G4String& nameDB, >> 112 G4double temp, G4double pres); 93 113 94 // Construct an ideal gas G4Material from sc 114 // Construct an ideal gas G4Material from scratch by atom count 95 G4Material* ConstructNewIdealGasMaterial(con << 115 // 96 const std::vector<G4int>& nbAtoms, G4doubl << 116 G4Material* ConstructNewIdealGasMaterial(const G4String& name, 97 G4double pressure = CLHEP::STP_Pressure); << 117 const std::vector<G4String>& elm, 98 << 118 const std::vector<G4int>& nbAtoms, >> 119 G4double temp = NTP_Temperature, >> 120 G4double pressure = CLHEP::STP_Pressure); >> 121 99 // verbosity level defined by G4NistManager 122 // verbosity level defined by G4NistManager >> 123 // 100 void SetVerbose(G4int val); 124 void SetVerbose(G4int val); 101 125 102 // cout predefined materials: 126 // cout predefined materials: 103 // "simple" - only pure materials in basic s 127 // "simple" - only pure materials in basic state (Z = 1, ..., 98) 104 // "compound" - NIST compounds 128 // "compound" - NIST compounds 105 // "hep" - HEP materials and compounds 129 // "hep" - HEP materials and compounds 106 // "biochemical" - bio-chemical materials << 130 // "biochemical" - bio-chemical materials 107 // "all" - all 131 // "all" - all >> 132 // 108 void ListMaterials(const G4String&) const; 133 void ListMaterials(const G4String&) const; 109 134 110 // cout lists of predefined materials 135 // cout lists of predefined materials >> 136 // 111 void ListNistSimpleMaterials() const; 137 void ListNistSimpleMaterials() const; 112 void ListNistCompoundMaterials() const; 138 void ListNistCompoundMaterials() const; 113 void ListHepMaterials() const; 139 void ListHepMaterials() const; 114 void ListSpaceMaterials() const; 140 void ListSpaceMaterials() const; 115 void ListBioChemicalMaterials() const; 141 void ListBioChemicalMaterials() const; 116 142 117 // access to the list of names of Geant4 pre 143 // access to the list of names of Geant4 predefined materials >> 144 // 118 const std::vector<G4String>& GetMaterialName 145 const std::vector<G4String>& GetMaterialNames() const; 119 146 120 // access to the NIST mean ionisation potent 147 // access to the NIST mean ionisation potentials and nominal densities >> 148 // 121 inline G4double GetMeanIonisationEnergy(G4in 149 inline G4double GetMeanIonisationEnergy(G4int index) const; 122 inline G4double GetNominalDensity(G4int inde 150 inline G4double GetNominalDensity(G4int index) const; 123 151 124 G4bool operator==(const G4NistMaterialBuilde 152 G4bool operator==(const G4NistMaterialBuilder&) const = delete; 125 G4bool operator!=(const G4NistMaterialBuilde 153 G4bool operator!=(const G4NistMaterialBuilder&) const = delete; 126 G4NistMaterialBuilder(const G4NistMaterialBu 154 G4NistMaterialBuilder(const G4NistMaterialBuilder&) = delete; 127 const G4NistMaterialBuilder& operator=(const 155 const G4NistMaterialBuilder& operator=(const G4NistMaterialBuilder&) = delete; 128 156 129 private: << 157 private: >> 158 130 void Initialise(); 159 void Initialise(); 131 void NistSimpleMaterials(); 160 void NistSimpleMaterials(); 132 void NistCompoundMaterials(); 161 void NistCompoundMaterials(); 133 void NistCompoundMaterials2(); 162 void NistCompoundMaterials2(); 134 void HepAndNuclearMaterials(); 163 void HepAndNuclearMaterials(); 135 void SpaceMaterials(); 164 void SpaceMaterials(); 136 void BioChemicalMaterials(); 165 void BioChemicalMaterials(); 137 166 138 // add parameters of material from NIST DB t 167 // add parameters of material from NIST DB to internal vectors 139 // density in g/cm3, mean ionisation potenti 168 // density in g/cm3, mean ionisation potential in eV 140 // << 169 // 141 void AddMaterial(const G4String& nameMat, G4 << 170 void AddMaterial(const G4String& nameMat, G4double dens, G4int Z=0, 142 G4int ncomp = 1, G4State = kStateSolid, G4 << 171 G4double pot=0.0, G4int ncomp=1, >> 172 G4State=kStateSolid, G4bool stp = true); 143 173 144 void AddGas(const G4String& nameMat, G4doubl 174 void AddGas(const G4String& nameMat, G4double T, G4double P); 145 175 146 void AddElementByWeightFraction(G4int Z, G4d 176 void AddElementByWeightFraction(G4int Z, G4double); 147 void AddElementByAtomCount(G4int Z, G4int); << 177 void AddElementByAtomCount (G4int Z, G4int); 148 178 149 void AddElementByWeightFraction(const G4Stri 179 void AddElementByWeightFraction(const G4String& name, G4double); 150 void AddElementByAtomCount(const G4String& n << 180 void AddElementByAtomCount (const G4String& name, G4int); 151 181 152 // build a G4Material from dataBase 182 // build a G4Material from dataBase 153 G4Material* BuildNistMaterial(const G4String 183 G4Material* BuildNistMaterial(const G4String& matname, G4bool warning); 154 G4Material* BuildMaterial(G4int idx); 184 G4Material* BuildMaterial(G4int idx); 155 185 156 void DumpElm(G4int) const; 186 void DumpElm(G4int) const; 157 void DumpMix(G4int) const; 187 void DumpMix(G4int) const; 158 188 159 private: << 189 private: 160 G4NistElementBuilder* elmBuilder; << 190 >> 191 G4NistElementBuilder* elmBuilder; 161 192 162 G4int verbose; << 193 G4int verbose; 163 G4int nMaterials{0}; << 194 G4int nMaterials; 164 G4int nComponents{0}; << 195 G4int nComponents; 165 G4int nCurrent{0}; << 196 G4int nCurrent; 166 G4int nElementary; << 197 G4int nElementary; 167 G4int nNIST; << 198 G4int nNIST; 168 G4int nHEP; << 199 G4int nHEP; 169 G4int nSpace; << 200 G4int nSpace; 170 << 201 171 std::vector<G4String> names; << 202 std::vector<G4String> names; 172 std::vector<G4String> chFormulas; << 203 std::vector<G4String> chFormulas; 173 << 204 174 std::vector<G4double> densities; << 205 std::vector<G4double> densities; 175 std::vector<G4double> ionPotentials; << 206 std::vector<G4double> ionPotentials; 176 std::vector<G4State> states; << 207 std::vector<G4State> states; 177 std::vector<G4double> fractions; << 208 std::vector<G4double> fractions; 178 std::vector<G4bool> atomCount; << 209 std::vector<G4bool> atomCount; 179 std::vector<G4int> components; << 210 std::vector<G4int> components; 180 std::vector<G4int> indexes; << 211 std::vector<G4int> indexes; 181 std::vector<G4int> elements; << 212 std::vector<G4int> elements; 182 std::vector<G4int> matIndex; << 213 std::vector<G4int> matIndex; 183 std::vector<G4bool> STP; << 214 std::vector<G4bool> STP; 184 << 215 185 std::vector<G4int> idxGas; << 216 std::vector<G4int> idxGas; 186 std::vector<G4double> gasTemperature; << 217 std::vector<G4double> gasTemperature; 187 std::vector<G4double> gasPressure; << 218 std::vector<G4double> gasPressure; 188 }; 219 }; 189 220 190 inline const std::vector<G4String>& G4NistMate << 221 inline const std::vector<G4String>& >> 222 G4NistMaterialBuilder::GetMaterialNames() const 191 { 223 { 192 return names; 224 return names; 193 } 225 } 194 226 195 inline G4double G4NistMaterialBuilder::GetMean << 227 inline G4double >> 228 G4NistMaterialBuilder::GetMeanIonisationEnergy(G4int index) const 196 { 229 { 197 return (index >= 0 && index < nMaterials) ? << 230 return (index >= 0 && index < nMaterials) ? ionPotentials[index] : 10.0*index; 198 } 231 } 199 232 200 inline G4double G4NistMaterialBuilder::GetNomi << 233 inline G4double >> 234 G4NistMaterialBuilder::GetNominalDensity(G4int index) const 201 { 235 { 202 return (index >= 0 && index < nMaterials) ? 236 return (index >= 0 && index < nMaterials) ? densities[index] : 0.0; 203 } 237 } 204 238 205 inline G4Material* G4NistMaterialBuilder::Find << 239 inline G4Material* >> 240 G4NistMaterialBuilder::FindMaterial(const G4String& name) const 206 { 241 { 207 const G4MaterialTable* theMaterialTable = G4 242 const G4MaterialTable* theMaterialTable = G4Material::GetMaterialTable(); 208 G4Material* ptr = nullptr; 243 G4Material* ptr = nullptr; 209 for (auto& mat : *theMaterialTable) { << 244 for(auto & mat : *theMaterialTable) { 210 if (name == mat->GetName()) { << 245 if(name == mat->GetName()) { 211 ptr = mat; 246 ptr = mat; 212 break; 247 break; 213 } << 248 } 214 } 249 } 215 return ptr; 250 return ptr; 216 } 251 } 217 252 218 inline G4Material* G4NistMaterialBuilder::Find << 253 inline G4Material* >> 254 G4NistMaterialBuilder::FindSimpleMaterial(G4int Z) const 219 { 255 { 220 return (Z > 0 && Z < nElementary) ? FindMate << 256 return (Z>0 && Z<nElementary) ? FindMaterial(names[Z]) : nullptr; 221 } 257 } 222 258 223 #endif 259 #endif 224 260