[819] | 1 | // |
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| 2 | // ******************************************************************** |
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| 3 | // * License and Disclaimer * |
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| 4 | // * * |
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| 5 | // * The Geant4 software is copyright of the Copyright Holders of * |
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| 6 | // * the Geant4 Collaboration. It is provided under the terms and * |
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| 7 | // * conditions of the Geant4 Software License, included in the file * |
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| 8 | // * LICENSE and available at http://cern.ch/geant4/license . These * |
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| 9 | // * include a list of copyright holders. * |
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| 10 | // * * |
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| 11 | // * Neither the authors of this software system, nor their employing * |
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| 12 | // * institutes,nor the agencies providing financial support for this * |
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| 13 | // * work make any representation or warranty, express or implied, * |
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| 14 | // * regarding this software system or assume any liability for its * |
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| 15 | // * use. Please see the license in the file LICENSE and URL above * |
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| 16 | // * for the full disclaimer and the limitation of liability. * |
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| 17 | // * * |
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| 18 | // * This code implementation is the result of the scientific and * |
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| 19 | // * technical work of the GEANT4 collaboration. * |
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| 20 | // * By using, copying, modifying or distributing the software (or * |
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| 21 | // * any work based on the software) you agree to acknowledge its * |
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| 22 | // * use in resulting scientific publications, and indicate your * |
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| 23 | // * acceptance of all terms of the Geant4 Software license. * |
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| 24 | // ******************************************************************** |
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| 25 | // |
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| 26 | // $Id: G4AugerData.hh |
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[1228] | 27 | // GEANT4 tag $Name: geant4-09-03 $ |
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[819] | 28 | // |
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| 29 | // Author: Alfonso Mantero (Alfonso.Mantero@ge.infn.it) |
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| 30 | // |
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| 31 | // History: |
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| 32 | // ----------- |
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| 33 | // 2 June 2002 First committed to cvs |
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| 34 | // |
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| 35 | // ------------------------------------------------------------------- |
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| 36 | |
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| 37 | // Class description: |
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| 38 | // Low Energy Electromagnetic Physics |
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| 39 | // This Class loads and stores all the information of auger effect (shellIds, |
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| 40 | // probabilities and energies of the electrons emitted) |
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| 41 | // Further documentation available from http://www.ge.infn.it/geant4/lowE |
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| 42 | |
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| 43 | // ------------------------------------------------------------------- |
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| 44 | |
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| 45 | #ifndef G4AUGERDATA_HH |
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| 46 | #define G4AUGERDATA_HH 1 |
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| 47 | |
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| 48 | #include "globals.hh" |
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| 49 | #include <vector> |
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| 50 | #include <map> |
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| 51 | #include "G4AugerTransition.hh" |
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| 52 | |
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| 53 | class G4DataVector; |
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| 54 | |
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| 55 | class G4AugerData |
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| 56 | { |
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| 57 | public: |
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| 58 | |
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| 59 | G4AugerData(); |
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| 60 | |
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| 61 | ~G4AugerData(); |
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| 62 | |
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| 63 | // The method returns the number of shells in wich a |
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| 64 | // vacancy can be filled by a NON-radiative transition, given the atomic number |
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| 65 | size_t NumberOfVacancies(G4int Z) const; |
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| 66 | |
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| 67 | // Given the index of the vacancy (and the atomic number Z) returns its identity |
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| 68 | G4int VacancyId(G4int Z, G4int vacancyIndex) const; |
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| 69 | |
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| 70 | // Given the index of a vacancy in the atom with the atomc number Z, returns the number of |
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| 71 | //shells starting from wich an electron can fill the vacancy |
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| 72 | size_t NumberOfTransitions(G4int Z, G4int vacancyIndex) const; |
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| 73 | |
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| 74 | // Given the atomic number Z, the Index of the initial vacancy shell |
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| 75 | // and the index of the starting shell for the |
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| 76 | // transition, returns the identity of the shell originating the electron transition |
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| 77 | G4int StartShellId(G4int Z, G4int initialVacancyIndex, G4int transitionShellIndex) const; |
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| 78 | |
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| 79 | // Given the atomic number , the indexes of the starting, the auger originating shell, |
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| 80 | // and the transition shell Id, returns the transition energy |
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| 81 | G4double StartShellEnergy(G4int Z, G4int vacancyIndex, G4int transitionId, G4int augerIndex) const; |
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| 82 | |
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| 83 | // Given the atomic number, the index of the starting shell, the auger originating shells, |
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| 84 | // and the transition shell Id, returns the transition probability |
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| 85 | G4double StartShellProb(G4int Z, G4int vacancyIndex,G4int transitionId,G4int augerIndex) const; |
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| 86 | |
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| 87 | // Given the atomic number, the index of the starting vacancy shell and the transition shell Id, |
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| 88 | // returns the number of shells wich an auger electron can come from. |
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| 89 | size_t NumberOfAuger(G4int Z, G4int initIndex, G4int vacancyId) const; |
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| 90 | |
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| 91 | // Given the atomic number, th index of the starting and the auger originating shell, |
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| 92 | // and the transition shell Id, returns the ager originating shell Id |
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| 93 | size_t AugerShellId(G4int Z, G4int vacancyIndex, G4int transId, G4int augerIndex) const; |
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| 94 | |
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| 95 | std::vector<G4AugerTransition> LoadData(G4int Z); |
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| 96 | |
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| 97 | void BuildAugerTransitionTable(); |
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| 98 | |
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| 99 | void PrintData(G4int Z); |
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| 100 | |
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| 101 | |
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| 102 | |
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| 103 | // Given the atomic number and the vacancy intial shell index returns |
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| 104 | // the AugerTransition object related to that shell |
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| 105 | |
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| 106 | G4AugerTransition* GetAugerTransition(G4int Z, G4int vacancyShellIndex); |
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| 107 | |
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| 108 | // Given the atomic number returns a vector of possible AugerTransition objects |
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| 109 | std::vector<G4AugerTransition>* GetAugerTransitions(G4int Z); |
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| 110 | |
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| 111 | private: |
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| 112 | |
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| 113 | // std::map<G4int,G4DataVector*,std::less<G4int> > idMap; |
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| 114 | |
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| 115 | typedef std::map<G4int,std::vector<G4AugerTransition>,std::less<G4int> > trans_Table; |
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| 116 | trans_Table augerTransitionTable; |
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| 117 | |
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| 118 | /* |
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| 119 | std::map<G4int,std::map<G4Int,G4DataVector*,std::less<G4int> >,std::less<G4int> > transProbabilityMap; |
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| 120 | std::map<G4int,std::map<G4Int,G4DataVector*,std::less<G4int> >,std::less<G4int> > transAugerIdMap; |
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| 121 | */ |
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| 122 | |
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| 123 | std::vector<G4int> nInitShells; |
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| 124 | std::vector<G4int> numberOfVacancies; |
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| 125 | |
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| 126 | }; |
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| 127 | |
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| 128 | #endif |
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| 129 | |
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| 130 | |
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| 131 | |
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| 132 | |
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| 133 | |
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