| 1 | /*
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| 2 |  * ChargeSmearer.hpp
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| 3 |  *
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| 4 |  *  Created on: Sep 2, 2015
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| 5 |  *      Author: heber
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| 6 |  */
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| 7 | 
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| 8 | #ifndef CHARGESMEARER_HPP_
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| 9 | #define CHARGESMEARER_HPP_
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| 10 | 
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| 11 | // include config.h
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| 12 | #ifdef HAVE_CONFIG_H
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| 13 | #include <config.h>
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| 14 | #endif
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| 15 | 
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| 16 | #include "CodePatterns/Singleton.hpp"
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| 17 | 
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| 18 | namespace VMG {
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| 19 |   class Grid;
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| 20 |   class GridIterator;
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| 21 |   class Index;
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| 22 | 
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| 23 |   namespace Particle {
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| 24 |     class BSpline;
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| 25 |   }
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| 26 | }
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| 27 | 
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| 28 | /** This class smears out a given (peak-like) charge value by using a radial
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| 29 |  * b-spline of compile-defined degree and runtime-defined width ("near field
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| 30 |  * cells").
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| 31 |  *
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| 32 |  * This is used to smear out the electronic charge distribution in the same
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| 33 |  * way as is done with the (point-like) nuclei charge distribution to increase
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| 34 |  * accuracy for the long-range calculations.
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| 35 |  *
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| 36 |  * The trick relies on two distant and non-overlapping charge distributions
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| 37 |  * behave actually as two point charges and vice versa. Core electron charge
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| 38 |  * distributions are strongly peaked and hence almost appear like the point-like
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| 39 |  * nuclei charge distributions. Hence, we perform the same trick as is done
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| 40 |  * with the nuclei. The charges are smeared out to such a degree that charge
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| 41 |  * distributions do not overlap except within a single fragment. Within
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| 42 |  * fragments the short-range Coulomb energy and forces is calculated accurately.
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| 43 |  * In between fragments the long-range calculations via vmg is used and hence
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| 44 |  * charges there may not overlap. The maximum distance allowed and hence the
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| 45 |  * maximum near field cells can be obtained from the Interfragmenter class.
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| 46 |  *
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| 47 |  * This class is a singleton as we only need to precalculate the spline values
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| 48 |  * for a given nfc once and then may use of all FragmentJobs.
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| 49 |  *
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| 50 |  * The code here is taken from vmg's units/particles/bspline.cpp::SetSpline().
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| 51 |  */
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| 52 | class ChargeSmearer : public Singleton<ChargeSmearer>
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| 53 | {
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| 54 |   friend class Singleton<ChargeSmearer>;
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| 55 | 
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| 56 | private:
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| 57 |   /** Private cstor for ChargeSmearer.
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| 58 |    *
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| 59 |    * Must be private as is singleton.
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| 60 |    *
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| 61 |    */
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| 62 |   ChargeSmearer();
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| 63 | 
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| 64 |   /** Dstor for ChargeSmearer.
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| 65 |    *
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| 66 |    */
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| 67 |   ~ChargeSmearer();
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| 68 | 
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| 69 | public:
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| 70 |   /** Setter for the values defining the grid and the spline extent.
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| 71 |    *
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| 72 |    * This function recalculates the spline values but only if the
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| 73 |    * values have changed with respect to the old ones.
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| 74 |    *
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| 75 |    * \param _spl spline to evaluate
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| 76 |    * \param _nfc near field cells
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| 77 |    * \param _meshwdith mesh spacing
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| 78 |    */
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| 79 |   void initializeSplineArray(
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| 80 |       const VMG::Particle::BSpline &_spl,
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| 81 |       const unsigned int _nfc,
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| 82 |       const double _meshwidth);
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| 83 | 
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| 84 |   /** Getter for the width of the smearing area, i.e. number of near field
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| 85 |    * cells.
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| 86 |    *
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| 87 |    * \return number of near field cells, i.e. 2nfc+1 equals width of array
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| 88 |    */
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| 89 |   unsigned int getNearFielCells() const
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| 90 |   { return nfc; }
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| 91 | 
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| 92 |   /** Getter for the meshwidth.
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| 93 |    *
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| 94 |    * \return meshwidth
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| 95 |    */
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| 96 |   unsigned int getMeshwidth() const
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| 97 |   { return meshwidth; }
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| 98 | 
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| 99 |   /** Smears out the given charge \a _value with the current \a nfc and bspline
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| 100 |    * on the \a _grid.
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| 101 |    *
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| 102 |    * \param _grid grid to smear out charge on
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| 103 |    * \param _iter central node on grid where to add smearing
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| 104 |    * \param _charge charge to smear out
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| 105 |    */
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| 106 |   void operator()(
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| 107 |       VMG::Grid& _grid,
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| 108 |       const VMG::GridIterator &_iter,
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| 109 |       const double _charge) const;
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| 110 | 
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| 111 | private:
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| 112 |   //!> typedef for the visitor functor
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| 113 |   typedef boost::function<void (const VMG::Index &, const double)> visitor_t;
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| 114 | 
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| 115 |   /** Visitor pattern for going over bspline support and executing the given
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| 116 |    * functor at each valid node.
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| 117 |    *
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| 118 |    * \param _iter iterator giving central node for support on grid
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| 119 |    * \param _visitor visitor functor to execute at each node (that's still inside grid)
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| 120 |    */
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| 121 |   void visitBSplineDomain(
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| 122 |       const VMG::GridIterator &_iter,
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| 123 |       const visitor_t &_visitor
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| 124 |       ) const;
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| 125 | 
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| 126 | private:
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| 127 |   //!> near field radius for bspline
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| 128 |   unsigned int nfc;
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| 129 | 
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| 130 |   //!> mesh width of the grid
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| 131 |   double meshwidth;
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| 132 | 
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| 133 |   //!> contains the array of pre-compiled spline values
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| 134 |   double *vals;
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| 135 | 
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| 136 |   //!> integrated value of spline array for normalization
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| 137 |   double int_val;
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| 138 | };
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| 139 | 
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| 140 | 
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| 141 | #endif /* CHARGESMEARER_HPP_ */
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