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geant4_9_6_p02
source
processes
hadronic
models
chiral_inv_phase_space
cross_sections
include
G4QuasiFreeRatios.hh
Go to the documentation of this file.
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//
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// ********************************************************************
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// ********************************************************************
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//
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//
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// GEANT4 tag $Name: not supported by cvs2svn $
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//
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//
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// GEANT4 physics class: G4QuasiFreeRatios -- header file
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// M.V. Kossov, ITEP(Moscow), 24-OCT-01
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// The last update: M.V. Kossov, CERN/ITEP (Moscow) 28-Oct-2011
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// ----------------------------------------------------------------------
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// Short description: Provides percentage of quasi-free and quasi-elastic
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// reactions in the inelastic reactions.
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// ----------------------------------------------------------------------
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#ifndef G4QuasiFreeRatios_h
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#define G4QuasiFreeRatios_h 1
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#include "
globals.hh
"
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#include "
G4ios.hh
"
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#include "
Randomize.hh
"
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#include <vector>
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#include "
G4QPDGCode.hh
"
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#include "
G4QHadron.hh
"
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#include "
G4QFreeScattering.hh
"
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#include "
G4QProtonElasticCrossSection.hh
"
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#include "
G4QNeutronElasticCrossSection.hh
"
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class
G4QuasiFreeRatios
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{
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protected
:
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G4QuasiFreeRatios
();
// Constructor
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public
:
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~G4QuasiFreeRatios
();
// Destructor
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static
G4QuasiFreeRatios
*
GetPointer
();
// Gives a pointer to this singletone
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// Pair(QuasiFree/Inelastic,QuasiElastic/QuasiFree)
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std::pair<G4double,G4double>
GetRatios
(
G4double
pIU,
G4int
prPDG,
G4int
tgZ,
G4int
tgN);
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// ChargeExchange/QuasiElastic factor pair<for protons (Z), for neutrons(N)>
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std::pair<G4double,G4double>
GetChExFactor
(
G4double
pIU,
G4int
pPDG,
G4int
Z
,
G4int
N
);
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// scatter (pPDG,p4M) on a virtual nucleon (NPDG,N4M), result: final pair(newN4M,newp4M)
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// if(newN4M.e()==0.) - below threshold, XS=0, no scattering of the projectile happened
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std::pair<G4LorentzVector,G4LorentzVector>
Scatter
(
G4int
NPDG,
G4LorentzVector
N4M,
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G4int
pPDG,
G4LorentzVector
p4M);
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// ChExer (pPDG,p4M) on a virtual nucleon (NPDG,N4M), result: final pair(newN4M,newp4M)
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// if(newN4M.e()==0.) - keep projectile, XS=0, no interaction of the progectile happened
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// User should himself change the charge (PDG) (e.g. pn->np, pi+n->pi0p, pi-p->pi0n etc.)
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// Recepy: change target n to p or taget p to n and conserve enrgy, changing projectile
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// Do not use for the nucleon, as it is already included in quasielastic, and for pi0.
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std::pair<G4LorentzVector,G4LorentzVector>
ChExer
(
G4int
NPDG,
G4LorentzVector
N4M,
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G4int
pPDG,
G4LorentzVector
p4M);
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// Mean hN El and Tot XS(IU) for the isotopic (Z,N): on p -> (Z=1,N=0), on n -> (Z=0,N=1)
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std::pair<G4double,G4double>
GetElTot
(
G4double
pIU,
G4int
hPDG,
G4int
Z,
G4int
N);
//(IU)
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// Calculate ChEx/El ratio coefficient (p is in independent units, (Z,N) is a target)
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G4double
ChExElCoef
(
G4double
p
,
G4int
Z,
G4int
N,
G4int
pPDG);
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// For hadron PDG with momentum Mom (GeV/c) on F(p/n) calculate <sig_el,sig_tot> pair(mb)
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// F=true corresponds to the Nroton target, F=false corresponds to the Proton target
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std::pair<G4double,G4double>
GetElTotXS
(
G4double
Mom,
G4int
PDG,
G4bool
F);
//<sigEl,sigT>
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private
:
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// These working member functions are in CHIPS units and must not be used externally
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G4double
GetQF2IN_Ratio(
G4double
TotCS_mb,
G4int
A);
// QuasiFree/Inelastic (fast)
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G4double
CalcQF2IN_Ratio(
G4double
TCSmb,
G4int
A);
// R=QuasuFree/Inelastic (sig_t in mb)
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// Body
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private
:
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G4QFreeScattering
* QFreeScat;
// Source of quasi-free scattering XS
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static
std::vector<G4double*> vT;
// Vector of pointers to LinTable
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static
std::vector<G4double*> vL;
// Vector of pointers to LogTable
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};
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#endif
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