00001 // 00002 // ******************************************************************** 00003 // * License and Disclaimer * 00004 // * * 00005 // * The Geant4 software is copyright of the Copyright Holders of * 00006 // * the Geant4 Collaboration. It is provided under the terms and * 00007 // * conditions of the Geant4 Software License, included in the file * 00008 // * LICENSE and available at http://cern.ch/geant4/license . These * 00009 // * include a list of copyright holders. * 00010 // * * 00011 // * Neither the authors of this software system, nor their employing * 00012 // * institutes,nor the agencies providing financial support for this * 00013 // * work make any representation or warranty, express or implied, * 00014 // * regarding this software system or assume any liability for its * 00015 // * use. Please see the license in the file LICENSE and URL above * 00016 // * for the full disclaimer and the limitation of liability. * 00017 // * * 00018 // * This code implementation is the result of the scientific and * 00019 // * technical work of the GEANT4 collaboration. * 00020 // * By using, copying, modifying or distributing the software (or * 00021 // * any work based on the software) you agree to acknowledge its * 00022 // * use in resulting scientific publications, and indicate your * 00023 // * acceptance of all terms of the Geant4 Software license. * 00024 // ******************************************************************** 00025 // 00026 // $Id: G4DensityEffectData.hh 67044 2013-01-30 08:50:06Z gcosmo $ 00027 00028 //--------------------------------------------------------------------------- 00029 // 00030 // GEANT4 Class file 00031 // 00032 // Description: Data on density effect 00033 // 00034 // Authors: A.Bagulya, A.Ivanchenko 28.10.2009 00035 // 00036 // Modifications: 00037 // 00038 // 00039 // 00040 //---------------------------------------------------------------------------- 00041 // 00042 // Data are taken from: 00043 // R.M. Sternheimer et al. Density Effect for the Ionization Loss of Charged 00044 // Particles in Various Substances. Atom. Data Nucl. Data Tabl. 30 (1984) 261-271. 00045 00046 #ifndef DensityEffectData_h 00047 #define DensityEffectData_h 1 00048 00049 //....oooOO0OOooo........oooOO0OOooo........oooOO0OOooo........oooOO0OOooo...... 00050 00051 #include "globals.hh" 00052 #include "G4Material.hh" 00053 #include <vector> 00054 00055 //....oooOO0OOooo........oooOO0OOooo........oooOO0OOooo........oooOO0OOooo...... 00056 00057 const G4int NDENSDATA = 278; 00058 const G4int NDENSARRAY = 9; 00059 const G4int NDENSELEM = 98; 00060 00061 class G4DensityEffectData 00062 { 00063 public: 00064 00065 G4DensityEffectData(); 00066 00067 ~G4DensityEffectData(); 00068 00069 // return index by Z, -1 if material is not in the table 00070 G4int GetElementIndex(G4int Z, G4State mState); 00071 00072 // return index by material name, -1 if material is not in the table 00073 G4int GetIndex(const G4String& matName); 00074 00075 // printout data for material 00076 void PrintData(const G4String& matName); 00077 00078 // printout all data 00079 void DumpData(); 00080 00081 // Access to the data via index 00082 inline G4double GetPlasmaEnergy(G4int idx); 00083 inline G4double GetAdjustmentFactor(G4int idx); 00084 inline G4double GetCdensity(G4int idx); 00085 inline G4double GetX0density(G4int idx); 00086 inline G4double GetX1density(G4int idx); 00087 inline G4double GetAdensity(G4int idx); 00088 inline G4double GetMdensity(G4int idx); 00089 inline G4double GetDelta0density(G4int idx); 00090 inline G4double GetErrorDensity(G4int idx); 00091 00092 private: 00093 00094 void Initialize(); 00095 00096 void AddMaterial(G4double* val, const G4String& matName); 00097 00098 // Assignment operator and copy constructor 00099 G4DensityEffectData & operator=(const G4DensityEffectData &right); 00100 G4DensityEffectData(const G4DensityEffectData&); 00101 00102 G4double data[NDENSDATA][NDENSARRAY]; 00103 std::vector<G4String> names; 00104 00105 // indexes defined only for pure materials 00106 G4int indexZ[NDENSELEM]; 00107 G4State state[NDENSELEM]; 00108 00109 G4int index; 00110 00111 }; 00112 00113 inline G4double G4DensityEffectData::GetPlasmaEnergy(G4int idx) 00114 { 00115 G4double x = DBL_MAX; 00116 if(idx >= 0 && idx < NDENSDATA) { x = data[idx][0]; } 00117 return x; 00118 } 00119 00120 inline G4double G4DensityEffectData::GetAdjustmentFactor(G4int idx) 00121 { 00122 G4double x = DBL_MAX; 00123 if(idx >= 0 && idx < NDENSDATA) { x = data[idx][1]; } 00124 return x; 00125 } 00126 00127 inline G4double G4DensityEffectData::GetCdensity(G4int idx) 00128 { 00129 G4double x = DBL_MAX; 00130 if(idx >= 0 && idx < NDENSDATA) { x = data[idx][2]; } 00131 return x; 00132 } 00133 00134 inline G4double G4DensityEffectData::GetX0density(G4int idx) 00135 { 00136 G4double x = DBL_MAX; 00137 if(idx >= 0 && idx < NDENSDATA) { x = data[idx][3]; } 00138 return x; 00139 } 00140 00141 inline G4double G4DensityEffectData::GetX1density(G4int idx) 00142 { 00143 G4double x = DBL_MAX; 00144 if(idx >= 0 && idx < NDENSDATA) { x = data[idx][4]; } 00145 return x; 00146 } 00147 00148 inline G4double G4DensityEffectData::GetAdensity(G4int idx) 00149 { 00150 G4double x = DBL_MAX; 00151 if(idx >= 0 && idx < NDENSDATA) { x = data[idx][5]; } 00152 return x; 00153 } 00154 00155 inline G4double G4DensityEffectData::GetMdensity(G4int idx) 00156 { 00157 G4double x = DBL_MAX; 00158 if(idx >= 0 && idx < NDENSDATA) { x = data[idx][6]; } 00159 return x; 00160 } 00161 00162 inline G4double G4DensityEffectData::GetDelta0density(G4int idx) 00163 { 00164 G4double x = DBL_MAX; 00165 if(idx >= 0 && idx < NDENSDATA) { x = data[idx][7]; } 00166 return x; 00167 } 00168 00169 inline G4double G4DensityEffectData::GetErrorDensity(G4int idx) 00170 { 00171 G4double x = DBL_MAX; 00172 if(idx >= 0 && idx < NDENSDATA) { x = data[idx][8]; } 00173 return x; 00174 } 00175 00176 00177 //....oooOO0OOooo........oooOO0OOooo........oooOO0OOooo........oooOO0OOooo...... 00178 00179 #endif 00180