Import Geant4 1.1.0 source tree
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@@ -5,8 +5,8 @@
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// based on the Program) you indicate your acceptance of this statement,
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// and all its terms.
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//
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// $Id: G4LEKaonPlusInelastic.cc,v 1.1.10.1 1999/12/07 20:52:23 gunter Exp $
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// GEANT4 tag $Name: geant4-01-00 $
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// $Id: G4LEKaonPlusInelastic.cc,v 1.1.10.1.2.2 1999/12/10 15:42:12 gunter Exp $
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// GEANT4 tag $Name: geant4-01-01 $
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//
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// Hadronic Process: Low Energy KaonPlus Inelastic Process
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// J.L. Chuma, TRIUMF, 05-Feb-1997
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@@ -34,11 +34,11 @@
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if( verboseLevel > 1 )
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{
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G4Material *targetMaterial = aTrack.GetMaterial();
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G4cout << "G4LEKaonPlusInelastic::ApplyYourself called" << endl;
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G4cout << "G4LEKaonPlusInelastic::ApplyYourself called" << G4endl;
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G4cout << "kinetic energy = " << originalIncident->GetKineticEnergy() << "MeV, ";
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G4cout << "target material = " << targetMaterial->GetName() << ", ";
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G4cout << "target particle = " << originalTarget->GetDefinition()->GetParticleName()
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<< endl;
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<< G4endl;
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}
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G4ReactionProduct currentParticle( originalIncident->GetDefinition() );
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currentParticle.SetMomentum( originalIncident->GetMomentum() );
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@@ -158,7 +158,7 @@
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G4int counter = -1;
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for( np=0; np<(numSec/3); ++np )
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{
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for( nm=max(0,np-2); nm<=np; ++nm )
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for( nm=G4std::max(0,np-2); nm<=np; ++nm )
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{
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for( nz=0; nz<numSec/3; ++nz )
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{
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@@ -179,7 +179,7 @@
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counter = -1;
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for( np=0; np<numSec/3; ++np )
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{
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for( nm=max(0,np-1); nm<=(np+1); ++nm )
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for( nm=G4std::max(0,np-1); nm<=(np+1); ++nm )
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{
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for( nz=0; nz<numSec/3; ++nz )
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{
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@@ -219,7 +219,7 @@
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nm = np = nz = 0;
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if( targetParticle.GetDefinition() == aProton )
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{
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test = exp( min( expxu, max( expxl, -sqr(1.0+b[0])/(2.0*c*c) ) ) );
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test = exp( G4std::min( expxu, G4std::max( expxl, -sqr(1.0+b[0])/(2.0*c*c) ) ) );
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w0 = test;
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wp = test*2.0;
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if( G4UniformRand() < w0/(w0+wp) )
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@@ -229,10 +229,10 @@
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}
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else // target is a neutron
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{
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test = exp( min( expxu, max( expxl, -sqr(1.0+b[1])/(2.0*c*c) ) ) );
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test = exp( G4std::min( expxu, G4std::max( expxl, -sqr(1.0+b[1])/(2.0*c*c) ) ) );
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w0 = test;
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wp = test;
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test = exp( min( expxu, max( expxl, -sqr(-1.0+b[1])/(2.0*c*c) ) ) );
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test = exp( G4std::min( expxu, G4std::max( expxl, -sqr(-1.0+b[1])/(2.0*c*c) ) ) );
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wm = test;
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wt = w0+wp+wm;
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wp += w0;
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@@ -256,7 +256,7 @@
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G4int counter = -1;
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for( np=0; (np<numSec/3) && (ran>=excs); ++np )
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{
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for( nm=max(0,np-2); (nm<=np) && (ran>=excs); ++nm )
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for( nm=G4std::max(0,np-2); (nm<=np) && (ran>=excs); ++nm )
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{
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for( nz=0; (nz<numSec/3) && (ran>=excs); ++nz )
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{
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@@ -265,7 +265,7 @@
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nt = np+nm+nz;
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if( nt > 0 )
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{
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test = exp( min( expxu, max( expxl, -(pi/4.0)*(nt*nt)/(n*n) ) ) );
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test = exp( G4std::min( expxu, G4std::max( expxl, -(pi/4.0)*(nt*nt)/(n*n) ) ) );
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dum = (pi/anpn)*nt*protmul[counter]*protnorm[nt-1]/(2.0*n*n);
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if( fabs(dum) < 1.0 )
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{
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@@ -286,7 +286,7 @@
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G4int counter = -1;
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for( np=0; (np<numSec/3) && (ran>=excs); ++np )
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{
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for( nm=max(0,np-1); (nm<=(np+1)) && (ran>=excs); ++nm )
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for( nm=G4std::max(0,np-1); (nm<=(np+1)) && (ran>=excs); ++nm )
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{
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for( nz=0; (nz<numSec/3) && (ran>=excs); ++nz )
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{
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@@ -295,7 +295,7 @@
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nt = np+nm+nz;
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if( (nt>=1) && (nt<=numSec) )
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{
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test = exp( min( expxu, max( expxl, -(pi/4.0)*(nt*nt)/(n*n) ) ) );
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test = exp( G4std::min( expxu, G4std::max( expxl, -(pi/4.0)*(nt*nt)/(n*n) ) ) );
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dum = (pi/anpn)*nt*neutmul[counter]*neutnorm[nt-1]/(2.0*n*n);
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if( fabs(dum) < 1.0 )
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{
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