source: src/Potentials/Specifics/ManyBodyPotential_Tersoff.hpp@ f48ad3

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Last change on this file since f48ad3 was f48ad3, checked in by Frederik Heber <heber@…>, 12 years ago

LevMartester now uses FunctionModel::setParameter() to set initial parameters.

  • this also adds initial parameter for the Tersoff case which have not been present before.
  • Property mode set to 100644
File size: 7.0 KB
RevLine 
[610c11]1/*
2 * ManyBodyPotential_Tersoff.hpp
3 *
4 * Created on: Sep 26, 2012
5 * Author: heber
6 */
7
8#ifndef MANYBODYPOTENTIAL_TERSOFF_HPP_
9#define MANYBODYPOTENTIAL_TERSOFF_HPP_
10
11// include config.h
12#ifdef HAVE_CONFIG_H
13#include <config.h>
14#endif
15
16#include <boost/function.hpp>
17#include <cmath>
18
[ffc368]19#include "CodePatterns/Assert.hpp"
20
[4f82f8]21#include "Potentials/EmpiricalPotential.hpp"
22#include "FunctionApproximation/FunctionModel.hpp"
23
[610c11]24/** This class is the implementation of the Tersoff potential function.
25 *
26 * \note The arguments_t argument list is here in the following order:
27 * -# first \f$ r_{ij}$ \f$,
28 * -# then all \f$ r_{ik}$ \f$ that are within the cutoff, i.e. \f$ r_{ik}$ < R + D\f$
29 *
30 */
[3ccea3]31class ManyBodyPotential_Tersoff : virtual public EmpiricalPotential, virtual public FunctionModel
[610c11]32{
[ffc368]33 //!> grant unit test access to internal parts
34 friend class ManyBodyPotential_TersoffTest;
[3ccea3]35 // some repeated typedefs to avoid ambiguities
36 typedef FunctionModel::arguments_t arguments_t;
37 typedef FunctionModel::result_t result_t;
38 typedef FunctionModel::results_t results_t;
39 typedef EmpiricalPotential::derivative_components_t derivative_components_t;
[e7579e]40 typedef FunctionModel::parameters_t parameters_t;
[610c11]41public:
42 /** Constructor for class ManyBodyPotential_Tersoff.
43 *
44 * @param _triplefunction function that returns a list of triples (i.e. the
45 * two remaining distances) to a given pair of points (contained as
46 * indices within the argument)
47 */
48 ManyBodyPotential_Tersoff(
[e7579e]49 boost::function< std::vector<arguments_t>(const argument_t &, const double)> &_triplefunction
50 );
51
52 /** Constructor for class ManyBodyPotential_Tersoff.
53 *
[ffc368]54 * @param _R offset for cutoff
55 * @param _S halfwidth for cutoff relative to \a _R
[e7579e]56 * @param A
57 * @param B
[ffc368]58 * @param lambda
59 * @param mu
[e7579e]60 * @param lambda3
61 * @param alpha
62 * @param beta
[ffc368]63 * @param chi
64 * @param omega
[e7579e]65 * @param n
66 * @param c
67 * @param d
68 * @param h
[56c5de4]69 * @param offset
[e7579e]70 * @param _triplefunction function that returns a list of triples (i.e. the
71 * two remaining distances) to a given pair of points (contained as
72 * indices within the argument)
73 */
74 ManyBodyPotential_Tersoff(
[ffc368]75 const double &_R,
76 const double &_S,
77 const double &_A,
78 const double &_B,
79 const double &_lambda,
80 const double &_mu,
81 const double &_lambda3,
82 const double &_alpha,
83 const double &_beta,
84 const double &_chi,
85 const double &_omega,
86 const double &_n,
87 const double &_c,
88 const double &_d,
89 const double &_h,
[56c5de4]90 const double &_offset,
[e7579e]91 boost::function< std::vector<arguments_t>(const argument_t &, const double)> &_triplefunction);
92
[610c11]93 /** Destructor of class ManyBodyPotential_Tersoff.
94 *
95 */
96 virtual ~ManyBodyPotential_Tersoff() {}
97
98 /** Evaluates the Tersoff potential for the given arguments.
99 *
100 * @param arguments single distance
101 * @return value of the potential function
102 */
[4f82f8]103 results_t operator()(const arguments_t &arguments) const;
[610c11]104
105 /** Evaluates the derivative of the Tersoff potential with respect to the
106 * input variables.
107 *
108 * @param arguments single distance
109 * @return vector with components of the derivative
110 */
111 derivative_components_t derivative(const arguments_t &arguments) const;
112
[3ccea3]113 /** Evaluates the derivative of the function with the given \a arguments
114 * with respect to a specific parameter indicated by \a index.
115 *
116 * \param arguments set of arguments as input variables to the function
117 * \param index derivative of which parameter
118 * \return result vector containing the derivative with respect to the given
119 * input
120 */
[e7579e]121 results_t parameter_derivative(const arguments_t &arguments, const size_t index) const;
122
123private:
124 /** Prohibit private default constructor.
125 *
126 * We essentially need the triplefunction, hence without this function cannot
127 * be.
128 */
129 ManyBodyPotential_Tersoff();
[3ccea3]130
[610c11]131private:
132 /** This function represents the cutoff \f$ f_C \f$.
133 *
134 * @param distance variable of the function
135 * @return a value in [0,1].
136 */
137 result_t function_cutoff(
138 const double &distance
139 ) const;
140 /** This function has the exponential feature from the Morse potential.
141 *
142 * @param prefactor prefactor parameter to exp function
143 * @param lambda scale parameter of exp function's argument
[ffc368]144 * @param distance variable of the function
[610c11]145 * @return
146 */
147 result_t function_smoother(
148 const double &prefactor,
[ffc368]149 const double &lambda,
150 const double &distance
151 ) const;
[610c11]152
153 /** This function represents \f$ (1 + \alpha^n \eta^n)^{-1/2n} \f$.
154 *
155 * @param alpha prefactor to eta function
156 * @param r_ij distance argument
[ffc368]157 * @param eta result value of eta or zeta
[610c11]158 * @return \f$ (1 + \alpha^n \eta^n)^{-1/2n} \f$
159 */
160 result_t function_prefactor(
161 const double &alpha,
[ffc368]162 const double &eta
[610c11]163 ) const;
164
165 result_t
166 function_eta(
167 const argument_t &r_ij
168 ) const;
169
170 result_t
171 function_zeta(
172 const argument_t &r_ij
173 ) const;
174
[f904d5]175 result_t
176 function_theta(
177 const double &r_ij,
178 const double &r_ik,
179 const double &r_jk
180 ) const;
181
[610c11]182 result_t
183 function_angle(
184 const double &r_ij,
185 const double &r_ik,
186 const double &r_jk
187 ) const;
188
[e7579e]189private:
[ca8d82]190 result_t
191 function_derivative_c(
192 const argument_t &r_ij
193 ) const;
194
195 result_t
196 function_derivative_d(
197 const argument_t &r_ij
198 ) const;
199
200 result_t
201 function_derivative_h(
202 const argument_t &r_ij
203 ) const;
204
205public:
[e7579e]206 enum parameter_enum_t {
[752dc7]207 A,
208 B,
209 lambda,
210 mu,
211 beta,
212 n,
213 c,
214 d,
215 h,
[56c5de4]216 offset,
[752dc7]217// R,
218// S,
219// lambda3,
220// alpha,
221// chi,
222// omega,
[e7579e]223 MAXPARAMS
224 };
[f48ad3]225
226private:
[e7579e]227 //!> parameter vector with parameters as in enum parameter_enum_t
228 parameters_t params;
229
[752dc7]230public:
[990a62]231 // some internal parameters which are fixed
[752dc7]232 const double R;
233 const double S;
[990a62]234 const double lambda3;
235 const double alpha;
236 const double chi;
237 const double omega;
238
[e7579e]239public:
240 /** Setter for parameters as required by FunctionModel interface.
241 *
242 * \param _params given set of parameters
243 */
244 void setParameters(const parameters_t &_params)
245 {
[ca8d82]246 ASSERT( _params.size() <= getParameterDimension(),
247 "ManyBodyPotential_Tersoff::setParameters() - we need not more than "
[e7579e]248 +toString(getParameterDimension())+" parameters.");
[ca8d82]249 for (size_t i=0; i< _params.size(); ++i)
250 params[i] = _params[i];
[e7579e]251 }
252
253 /** Getter for parameters as required by FunctionModel interface.
254 *
255 * \return set of parameters
256 */
257 parameters_t getParameters() const
258 {
259 return params;
260 }
261
262 /** Getter for the number of parameters of this model function.
263 *
264 * \return number of parameters
265 */
266 size_t getParameterDimension() const
267 {
268 return MAXPARAMS;
269 }
270
[610c11]271private:
272 //!> bound function that obtains the triples for the internal coordinationb summation.
273 const boost::function< std::vector< arguments_t >(const argument_t &, const double)> &triplefunction;
274};
275
276
277#endif /* MANYBODYPOTENTIAL_TERSOFF_HPP_ */
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