Geant4 11.2.2
Toolkit for the simulation of the passage of particles through matter
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G4IsotopeProperty.cc
Go to the documentation of this file.
1//
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24// ********************************************************************
25//
26// G4IsotopeProperty class implementation
27//
28// Author: H.Kurashige, 5 October 1999
29// --------------------------------------------------------------------
30
31#include "G4IsotopeProperty.hh"
32
33#include "G4DecayTable.hh"
35#include "G4SystemOfUnits.hh"
36#include "G4ios.hh"
37
38#include <iomanip>
39
41{
42 delete fDecayTable;
43 fDecayTable = nullptr;
44}
45
47 : fAtomicNumber(right.fAtomicNumber),
48 fAtomicMass(right.fAtomicMass),
49 fISpin(right.fISpin),
50 fEnergy(right.fEnergy),
51 fLifeTime(right.fLifeTime),
52
53 fMagneticMoment(right.fMagneticMoment),
54 fIsomerLevel(right.fIsomerLevel),
55 fFloatLevelBase(right.fFloatLevelBase)
56{
57 // decay table is not copied because G4DecayTable has no copy constructor
58}
59
61{
62 if (this != &right) {
63 fAtomicNumber = right.fAtomicNumber;
64 fAtomicMass = right.fAtomicMass;
65 fISpin = right.fISpin;
66 fMagneticMoment = right.fMagneticMoment;
67 fEnergy = right.fEnergy;
68 fLifeTime = right.fLifeTime;
69 fIsomerLevel = right.fIsomerLevel;
70 fFloatLevelBase = right.fFloatLevelBase;
71 // decay table is not copied because G4DecayTable has no copy constructor
72 fDecayTable = nullptr;
73 }
74 return *this;
75}
76
78{
79 G4bool value = true;
80 value = value && (fAtomicNumber == right.fAtomicNumber);
81 value = value && (fAtomicMass == right.fAtomicMass);
82 value = value && (fISpin == right.fISpin);
83 value = value && (fMagneticMoment == right.fMagneticMoment);
84 value = value && (fEnergy == right.fEnergy);
85 value = value && (fLifeTime == right.fLifeTime);
86 value = value && (fIsomerLevel == right.fIsomerLevel);
87 value = value && (fFloatLevelBase == right.fFloatLevelBase);
88 return value;
89}
90
92{
93 return !(*this == right);
94}
95
97{
98#ifdef G4VERBOSE
99 G4cout << "AtomicNumber: " << fAtomicNumber << ", "
100 << "AtomicMass: " << fAtomicMass << G4endl;
101 if ((fISpin % 2) != 0) {
102 G4cout << "Spin: " << fISpin << "/2";
103 }
104 else {
105 G4cout << "Spin: " << fISpin / 2;
106 }
107 G4cout << ", "
108 << "MagneticMoment: " << fMagneticMoment / MeV * tesla << "[MeV/T]" << G4endl;
109 G4cout << "Isomer Level: " << fIsomerLevel << ", Excited Energy: " << std::setprecision(1)
110 << fEnergy / keV;
111 if (fFloatLevelBase != G4Ions::G4FloatLevelBase::no_Float) {
112 G4cout << " +" << G4Ions::FloatLevelBaseChar(fFloatLevelBase);
113 }
114 G4cout << " [keV]"
115 << ", " << std::setprecision(6) << "Life Time: " << fLifeTime / ns << "[ns]" << G4endl;
116 if (fDecayTable != nullptr) {
117 fDecayTable->DumpInfo();
118 }
119 else {
120 // G4cout << "Decay Table is not defined !" << G4endl;
121 }
122#endif
123}
bool G4bool
Definition G4Types.hh:86
#define G4endl
Definition G4ios.hh:67
G4GLOB_DLL std::ostream G4cout
void DumpInfo() const
static char FloatLevelBaseChar(G4Ions::G4FloatLevelBase flb)
Definition G4Ions.cc:185
G4bool operator!=(const G4IsotopeProperty &right) const
G4IsotopeProperty()=default
G4IsotopeProperty & operator=(G4IsotopeProperty &right)
G4bool operator==(const G4IsotopeProperty &right) const