Geant4 11.1.1
Toolkit for the simulation of the passage of particles through matter
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G4VGaussianQuadrature.hh
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25//
26// G4VGaussianQuadrature
27//
28// Class description:
29//
30// Base Class for realisation of numerical methodes for integration of functions
31// with signature double f(double) by Gaussian quadrature methods
32// Roots of ortogonal polynoms and corresponding weights are calculated based on
33// iteration method (by bisection Newton algorithm). Constant values for initial
34// approximations were derived from the book:
35// M. Abramowitz, I. Stegun, Handbook of mathematical functions,
36// DOVER Publications INC, New York 1965 ; chapters 9, 10, and 22.
37
38// Author: V.Grichine, 18.04.1997
39// --------------------------------------------------------------------
40#ifndef G4VGAUSSIANQUADRATURE_HH
41#define G4VGAUSSIANQUADRATURE_HH 1
42
43#include "globals.hh"
44
46
48{
49 public:
50 explicit G4VGaussianQuadrature(function pFunction);
51 // Base constructor
52
53 virtual ~G4VGaussianQuadrature();
54 // Virtual destructor
55
58
59 G4double GetAbscissa(G4int index) const;
60 G4double GetWeight(G4int index) const;
61 G4int GetNumber() const;
62 // Access functions
63
64 protected:
66 // Auxiliary function which returns the value of std::log(gamma-function(x))
67
68 // Data members common for GaussianQuadrature family
69 //
70 function fFunction; // pointer to the function to be integrated
71 G4double* fAbscissa = nullptr; // array of abscissas
72 G4double* fWeight = nullptr; // array of corresponding weights
73 G4int fNumber = 0; // the number of points in fAbscissa and fWeight arrays
74};
75
76#endif
G4double(*)(G4double) function
double G4double
Definition: G4Types.hh:83
int G4int
Definition: G4Types.hh:85
G4double(*)(G4double) function
G4double GetWeight(G4int index) const
G4VGaussianQuadrature & operator=(const G4VGaussianQuadrature &)=delete
G4double GammaLogarithm(G4double xx)
G4double GetAbscissa(G4int index) const
G4VGaussianQuadrature(const G4VGaussianQuadrature &)=delete