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G4Na21GEMProbability.cc
Go to the documentation of this file.
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//
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// ********************************************************************
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// * License and Disclaimer *
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// * *
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// * The Geant4 software is copyright of the Copyright Holders of *
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// * the Geant4 Collaboration. It is provided under the terms and *
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// * conditions of the Geant4 Software License, included in the file *
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// * LICENSE and available at http://cern.ch/geant4/license . These *
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// * include a list of copyright holders. *
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// * *
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// * Neither the authors of this software system, nor their employing *
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// * institutes,nor the agencies providing financial support for this *
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// * work make any representation or warranty, express or implied, *
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// * regarding this software system or assume any liability for its *
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// * use. Please see the license in the file LICENSE and URL above *
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// * for the full disclaimer and the limitation of liability. *
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// * *
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// * This code implementation is the result of the scientific and *
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// * technical work of the GEANT4 collaboration. *
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// * By using, copying, modifying or distributing the software (or *
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// * any work based on the software) you agree to acknowledge its *
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// * use in resulting scientific publications, and indicate your *
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// * acceptance of all terms of the Geant4 Software license. *
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// ********************************************************************
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//
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// $Id: G4Na21GEMProbability.cc 67983 2013-03-13 10:42:03Z gcosmo $
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//
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// Hadronic Process: Nuclear De-excitations
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// by V. Lara (Nov 1999)
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//
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#include "
G4Na21GEMProbability.hh
"
33
#include "
G4SystemOfUnits.hh
"
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G4Na21GEMProbability::G4Na21GEMProbability
() :
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G4GEMProbability
(21,11,3.0/2.0)
// A,Z,Spin
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{
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ExcitEnergies
.push_back(331.93*
keV
);
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ExcitSpins
.push_back(5.0/2.0);
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ExcitLifetimes
.push_back(7.08*
picosecond
);
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ExcitEnergies
.push_back(1716.0*
keV
);
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ExcitSpins
.push_back(7.0/2.0);
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ExcitLifetimes
.push_back(28.0e-3*
picosecond
);
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ExcitEnergies
.push_back(2424.9*
keV
);
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ExcitSpins
.push_back(1.0/2.0);
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ExcitLifetimes
.push_back(2.0e-3*
picosecond
);
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ExcitEnergies
.push_back(2798.2*
keV
);
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ExcitSpins
.push_back(1.0/2.0);
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ExcitLifetimes
.push_back(
fPlanck
/(4.4E-6*
eV
));
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ExcitEnergies
.push_back(2829.4*
keV
);
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ExcitSpins
.push_back(9.0/2.0);
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ExcitLifetimes
.push_back(
fPlanck
/(50E-6*
eV
));
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ExcitEnergies
.push_back(3544.0*
keV
);
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ExcitSpins
.push_back(5.0/2.0);
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ExcitLifetimes
.push_back(
fPlanck
/(15.5*
eV
));
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ExcitEnergies
.push_back(3679.7*
keV
);
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ExcitSpins
.push_back(3.0/2.0);
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ExcitLifetimes
.push_back(
fPlanck
/(193.0*
eV
));
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ExcitEnergies
.push_back(3863.1*
keV
);
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ExcitSpins
.push_back(5.0/2.0);
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ExcitLifetimes
.push_back(
fPlanck
/(2.6*
eV
));
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ExcitEnergies
.push_back(4170.0*
keV
);
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ExcitSpins
.push_back(3.0/2.0);
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ExcitLifetimes
.push_back(
fPlanck
/(180.0*
keV
));
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ExcitEnergies
.push_back(4294.0*
keV
);
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ExcitSpins
.push_back(5.0/2.0);
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ExcitLifetimes
.push_back(
fPlanck
/(3.93*
keV
));
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ExcitEnergies
.push_back(4468.0*
keV
);
80
ExcitSpins
.push_back(3.0/2.0);
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ExcitLifetimes
.push_back(
fPlanck
/(21.0*
keV
));
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ExcitEnergies
.push_back(4980.0*
keV
);
84
ExcitSpins
.push_back(1.0/2.0);
85
ExcitLifetimes
.push_back(
fPlanck
/(200.0*
keV
));
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ExcitEnergies
.push_back(5457.0*
keV
);
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ExcitSpins
.push_back(1.0/2.0);
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ExcitLifetimes
.push_back(
fPlanck
/(110.0*
keV
));
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ExcitEnergies
.push_back(5770.0*
keV
);
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ExcitSpins
.push_back(7.0/2.0);
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ExcitLifetimes
.push_back(
fPlanck
/(20.0*
keV
));
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ExcitEnergies
.push_back(5815.0*
keV
);
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ExcitSpins
.push_back(7.0/2.0);
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ExcitLifetimes
.push_back(
fPlanck
/(0.4*
keV
));
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ExcitEnergies
.push_back(5828.0*
keV
);
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ExcitSpins
.push_back(3.0/2.0);
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ExcitLifetimes
.push_back(
fPlanck
/(25.0*
keV
));
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ExcitEnergies
.push_back(6094.0*
keV
);
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ExcitSpins
.push_back(5.0/2.0);
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ExcitLifetimes
.push_back(
fPlanck
/(5.0*
keV
));
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107
ExcitEnergies
.push_back(6512.0*
keV
);
108
ExcitSpins
.push_back(3.0/2.0);
109
ExcitLifetimes
.push_back(
fPlanck
/(220.0*
keV
));
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111
ExcitEnergies
.push_back(6908.0*
keV
);
112
ExcitSpins
.push_back(3.0/2.0);
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ExcitLifetimes
.push_back(
fPlanck
/(100.0*
keV
));
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ExcitEnergies
.push_back(7194.0*
keV
);
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ExcitSpins
.push_back(1.0/2.0);
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ExcitLifetimes
.push_back(
fPlanck
/(320.0*
keV
));
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ExcitEnergies
.push_back(7432.0*
keV
);
120
ExcitSpins
.push_back(5.0/2.0);
121
ExcitLifetimes
.push_back(
fPlanck
/(300.0*
keV
));
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123
ExcitEnergies
.push_back(8973.0*
keV
);
124
ExcitSpins
.push_back(3.0/2.0);
125
ExcitLifetimes
.push_back(
fPlanck
/(1.2*
keV
));
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127
ExcitEnergies
.push_back(9220.0*
keV
);
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ExcitSpins
.push_back(1.0/2.0);
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ExcitLifetimes
.push_back(
fPlanck
/(2.3*
keV
));
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}
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G4Na21GEMProbability::~G4Na21GEMProbability
()
134
{}
G4GEMProbability
Definition:
G4GEMProbability.hh:54
G4Na21GEMProbability::~G4Na21GEMProbability
~G4Na21GEMProbability()
Definition:
G4Na21GEMProbability.cc:133
G4Na21GEMProbability.hh
G4GEMProbability::ExcitLifetimes
std::vector< G4double > ExcitLifetimes
Definition:
G4GEMProbability.hh:132
picosecond
static constexpr double picosecond
Definition:
G4SIunits.hh:161
G4GEMProbability::ExcitSpins
std::vector< G4double > ExcitSpins
Definition:
G4GEMProbability.hh:129
eV
static constexpr double eV
Definition:
G4SIunits.hh:215
G4Na21GEMProbability::G4Na21GEMProbability
G4Na21GEMProbability()
Definition:
G4Na21GEMProbability.cc:35
G4GEMProbability::ExcitEnergies
std::vector< G4double > ExcitEnergies
Definition:
G4GEMProbability.hh:126
G4SystemOfUnits.hh
keV
static constexpr double keV
Definition:
G4SIunits.hh:216
G4GEMProbability::fPlanck
G4double fPlanck
Definition:
G4GEMProbability.hh:123
source
geant4.10.03.p03
source
processes
hadronic
models
de_excitation
gem_evaporation
src
G4Na21GEMProbability.cc
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