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// This code implementation is the intellectual property of
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// the RD44 GEANT4 collaboration.
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//
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// By copying, distributing or modifying the Program (or any work
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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: G4PhysicsOrderedFreeVector.hh,v 2.2 1998/07/13 16:55:48 urbi Exp $
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// GEANT4 tag $Name: geant4-00 $
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//
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////////////////////////////////////////////////////////////////////////
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// PhysicsOrderedFreeVector Class Definition
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////////////////////////////////////////////////////////////////////////
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//
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// File: G4PhysicsOrderedFreeVector.hh
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// Version: 1.0
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// Created: 1996-08-13
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// Author: Juliet Armstrong
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// Updated: 1997-03-25 by Peter Gumplinger
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// > cosmetics (only)
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// mail: gum@triumf.ca
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//
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// Description:
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// A physics ordered free vector inherits from G4PhysicsVector which
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// has values of energy-loss, cross-section, and other physics values
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// of a particle in matter in a given range of the energy, momentum,
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// etc.). In addition, the ordered free vector provides a method for
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// the user to insert energy/value pairs in sequence. Methods to
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// Retrieve the Max and Min energies and values from the vector are
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// also provided.
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//
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////////////////////////////////////////////////////////////////////////
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#ifndef G4PhysicsOrderedFreeVector_h
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#define G4PhysicsOrderedFreeVector_h 1
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/////////////
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// Includes
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/////////////
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#include <rw/tpordvec.h>
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#include "G4PhysicsVector.hh"
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/////////////////////
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// Class Definition
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/////////////////////
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class G4PhysicsOrderedFreeVector : public G4PhysicsVector
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{
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public:
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////////////////////////////////
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// Constructors and Destructor
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////////////////////////////////
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G4PhysicsOrderedFreeVector();
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G4PhysicsOrderedFreeVector(G4double* Energies,
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G4double* Values,
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size_t VectorLength);
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~G4PhysicsOrderedFreeVector();
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////////////
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// Methods
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////////////
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void InsertValues(G4double energy, G4double value);
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G4double GetLowEdgeEnergy(size_t binNumber) const;
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G4double GetMaxValue();
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G4double GetMinValue();
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G4double GetEnergy(G4double aValue);
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G4double GetMaxLowEdgeEnergy();
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G4double GetMinLowEdgeEnergy();
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void DumpValues();
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private:
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size_t FindBinLocation(G4double theEnergy) const;
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size_t FindValueBinLocation(G4double aValue);
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G4double LinearInterpolationOfEnergy(G4double aValue, size_t theLocBin);
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};
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////////////////////
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// Inline methods
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////////////////////
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inline
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G4double G4PhysicsOrderedFreeVector::GetMaxValue()
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{
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return dataVector.last();
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}
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inline
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G4double G4PhysicsOrderedFreeVector::GetMinValue()
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{
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return dataVector.first();
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}
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inline
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G4double G4PhysicsOrderedFreeVector::GetMaxLowEdgeEnergy()
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{
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return binVector.last();
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}
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inline
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G4double G4PhysicsOrderedFreeVector::GetMinLowEdgeEnergy()
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{
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return binVector.first();
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}
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inline
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void G4PhysicsOrderedFreeVector::DumpValues()
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{
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for (G4int i = 0; i < numberOfBin; i++) {
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G4cout << binVector[i] << "\t" << dataVector[i] << endl;
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}
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}
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inline
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size_t G4PhysicsOrderedFreeVector::FindBinLocation(G4double theEnergy) const
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{
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G4int n1 = 0;
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G4int n2 = numberOfBin/2;
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G4int n3 = numberOfBin - 1;
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while (n1 != n3 - 1) {
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if (theEnergy > binVector(n2))
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n1 = n2;
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else
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n3 = n2;
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n2 = n1 + (n3 - n1 + 1)/2;
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}
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return (size_t)n1;
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}
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#endif /* G4PhysicsOrderedFreeVector_h */
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