| [610c11] | 1 | /*
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 | 2 |  * Project: MoleCuilder
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 | 3 |  * Description: creates and alters molecular systems
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 | 4 |  * Copyright (C)  2012 University of Bonn. All rights reserved.
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| [acc9b1] | 5 |  * Copyright (C)  2013 Frederik Heber. All rights reserved.
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| [610c11] | 6 |  * Please see the COPYING file or "Copyright notice" in builder.cpp for details.
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 | 7 |  * 
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 | 8 |  *
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 | 9 |  *   This file is part of MoleCuilder.
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 | 10 |  *
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 | 11 |  *    MoleCuilder is free software: you can redistribute it and/or modify
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 | 12 |  *    it under the terms of the GNU General Public License as published by
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 | 13 |  *    the Free Software Foundation, either version 2 of the License, or
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 | 14 |  *    (at your option) any later version.
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 | 15 |  *
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 | 16 |  *    MoleCuilder is distributed in the hope that it will be useful,
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 | 17 |  *    but WITHOUT ANY WARRANTY; without even the implied warranty of
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 | 18 |  *    MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
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 | 19 |  *    GNU General Public License for more details.
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 | 20 |  *
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 | 21 |  *    You should have received a copy of the GNU General Public License
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 | 22 |  *    along with MoleCuilder.  If not, see <http://www.gnu.org/licenses/>. 
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 | 23 |  */
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 | 24 | 
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 | 25 | /*
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 | 26 |  * ManyBodyPotential_Tersoff.cpp
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 | 27 |  *
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 | 28 |  *  Created on: Sep 26, 2012
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 | 29 |  *      Author: heber
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 | 30 |  */
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 | 31 | 
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 | 32 | 
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 | 33 | // include config.h
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 | 34 | #ifdef HAVE_CONFIG_H
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 | 35 | #include <config.h>
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 | 36 | #endif
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 | 37 | 
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 | 38 | #include "CodePatterns/MemDebug.hpp"
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 | 39 | 
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 | 40 | #include "ManyBodyPotential_Tersoff.hpp"
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 | 41 | 
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| [ed2551] | 42 | #include <boost/assign/list_of.hpp> // for 'map_list_of()'
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| [610c11] | 43 | #include <boost/bind.hpp>
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 | 44 | #include <cmath>
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| [ed2551] | 45 | #include <string>
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| [610c11] | 46 | 
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 | 47 | #include "CodePatterns/Assert.hpp"
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| [ffc368] | 48 | //#include "CodePatterns/Info.hpp"
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| [f904d5] | 49 | #include "CodePatterns/Log.hpp"
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| [610c11] | 50 | 
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| [7b019a] | 51 | #include "FunctionApproximation/Extractors.hpp"
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| [d52819] | 52 | #include "FunctionApproximation/TrainingData.hpp"
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| [610c11] | 53 | #include "Potentials/helpers.hpp"
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| [94453f1] | 54 | #include "Potentials/InternalCoordinates/OneBody_Constant.hpp"
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| [b760bc3] | 55 | #include "Potentials/ParticleTypeCheckers.hpp"
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| [610c11] | 56 | 
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| [7b019a] | 57 | class Fragment;
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 | 58 | 
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| [ed2551] | 59 | // static definitions
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 | 60 | const ManyBodyPotential_Tersoff::ParameterNames_t
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 | 61 | ManyBodyPotential_Tersoff::ParameterNames =
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 | 62 |       boost::assign::list_of<std::string>
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 | 63 |       ("A")
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 | 64 |       ("B")
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 | 65 |       ("lambda")
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 | 66 |       ("mu")
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 | 67 |       ("beta")
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 | 68 |       ("n")
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 | 69 |       ("c")
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 | 70 |       ("d")
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 | 71 |       ("h")
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 | 72 | //      ("R")
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 | 73 | //      ("S")
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 | 74 | //      ("lambda3")
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 | 75 | //      ("alpha")
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 | 76 | //      ("chi")
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 | 77 | //      ("omega")
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 | 78 |     ;
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 | 79 | const std::string ManyBodyPotential_Tersoff::potential_token("tersoff");
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| [94453f1] | 80 | Coordinator::ptr ManyBodyPotential_Tersoff::coordinator(new OneBody_Constant());
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| [ed2551] | 81 | 
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| [713888] | 82 | ManyBodyPotential_Tersoff::ManyBodyPotential_Tersoff() :
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 | 83 |     EmpiricalPotential(),
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| [a82d33] | 84 |     params(parameters_t(MAXPARAMS, 0.)),
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| [713888] | 85 |     R(3.2),
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 | 86 |     S(3.5),
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 | 87 |     lambda3(0.),
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 | 88 |     alpha(0.),
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 | 89 |     chi(1.),
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 | 90 |     omega(1.),
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 | 91 |     triplefunction(&Helpers::NoOp_Triplefunction)
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 | 92 | {}
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 | 93 | 
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| [e7579e] | 94 | ManyBodyPotential_Tersoff::ManyBodyPotential_Tersoff(
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| [775dd1a] | 95 |     const ParticleTypes_t &_ParticleTypes
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| [e7579e] | 96 |     ) :
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| [fdd23a] | 97 |     EmpiricalPotential(_ParticleTypes),
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| [e7579e] | 98 |     params(parameters_t(MAXPARAMS, 0.)),
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| [752dc7] | 99 |     R(3.2),
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 | 100 |     S(3.5),
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| [990a62] | 101 |     lambda3(0.),
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 | 102 |     alpha(0.),
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 | 103 |     chi(1.),
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 | 104 |     omega(1.),
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| [775dd1a] | 105 |     triplefunction(&Helpers::NoOp_Triplefunction)
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| [dbf8c8] | 106 | {
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 | 107 |   // have some decent defaults for parameter_derivative checking
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 | 108 |   params[A] = 3000.;
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 | 109 |   params[B] = 300.;
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 | 110 |   params[lambda] = 5.;
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 | 111 |   params[mu] = 3.;
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 | 112 |   params[beta] = 2.;
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 | 113 |   params[n] = 1.;
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 | 114 |   params[c] = 0.01;
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 | 115 |   params[d] = 1.;
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 | 116 |   params[h] = 0.01;
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 | 117 | }
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| [e7579e] | 118 | 
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 | 119 | ManyBodyPotential_Tersoff::ManyBodyPotential_Tersoff(
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| [ed2551] | 120 |     const ParticleTypes_t &_ParticleTypes,
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| [ffc368] | 121 |     const double &_R,
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 | 122 |     const double &_S,
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| [e7579e] | 123 |     const double &_A,
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 | 124 |     const double &_B,
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| [ffc368] | 125 |     const double &_lambda,
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 | 126 |     const double &_mu,
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| [e7579e] | 127 |     const double &_lambda3,
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 | 128 |     const double &_alpha,
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 | 129 |     const double &_beta,
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| [ffc368] | 130 |     const double &_chi,
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 | 131 |     const double &_omega,
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| [e7579e] | 132 |     const double &_n,
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 | 133 |     const double &_c,
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 | 134 |     const double &_d,
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| [b15ae7] | 135 |     const double &_h) :
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| [fdd23a] | 136 |   EmpiricalPotential(_ParticleTypes),
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| [e7579e] | 137 |   params(parameters_t(MAXPARAMS, 0.)),
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| [752dc7] | 138 |   R(_R),
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 | 139 |   S(_S),
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| [990a62] | 140 |   lambda3(_lambda3),
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 | 141 |   alpha(_alpha),
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 | 142 |   chi(_chi),
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 | 143 |   omega(_mu),
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| [775dd1a] | 144 |   triplefunction(&Helpers::NoOp_Triplefunction)
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| [e7579e] | 145 | {
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| [ffc368] | 146 | //  Info info(__func__);
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| [752dc7] | 147 | //  R = _R;
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 | 148 | //  S = _S;
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| [e7579e] | 149 |   params[A] = _A;
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 | 150 |   params[B] = _B;
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| [ffc368] | 151 |   params[lambda] = _lambda;
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 | 152 |   params[mu] = _mu;
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| [990a62] | 153 | //  lambda3 = _lambda3;
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 | 154 | //  alpha = _alpha;
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| [e7579e] | 155 |   params[beta] = _beta;
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| [990a62] | 156 | //  chi = _chi;
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 | 157 | //  omega = _omega;
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| [e7579e] | 158 |   params[n] = _n;
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 | 159 |   params[c] = _c;
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 | 160 |   params[d] = _d;
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 | 161 |   params[h] = _h;
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 | 162 | }
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 | 163 | 
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| [086070] | 164 | void ManyBodyPotential_Tersoff::setParameters(const parameters_t &_params)
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 | 165 | {
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 | 166 |   const size_t paramsDim = _params.size();
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 | 167 |   ASSERT( paramsDim <= getParameterDimension(),
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 | 168 |       "ManyBodyPotential_Tersoff::setParameters() - we need not more than "
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 | 169 |       +toString(getParameterDimension())+" parameters.");
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 | 170 |   for (size_t i=0; i< paramsDim; ++i)
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 | 171 |     params[i] = _params[i];
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 | 172 | 
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 | 173 | #ifndef NDEBUG
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 | 174 |   parameters_t check_params(getParameters());
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 | 175 |   check_params.resize(paramsDim); // truncate to same size
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 | 176 |   ASSERT( check_params == _params,
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 | 177 |       "ManyBodyPotential_Tersoff::setParameters() - failed, mismatch in to be set "
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 | 178 |       +toString(_params)+" and set "+toString(check_params)+" params.");
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 | 179 | #endif
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 | 180 | }
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 | 181 | 
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| [4f82f8] | 182 | ManyBodyPotential_Tersoff::results_t
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| [610c11] | 183 | ManyBodyPotential_Tersoff::operator()(
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 | 184 |     const arguments_t &arguments
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 | 185 |     ) const
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 | 186 | {
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| [ffc368] | 187 | //  Info info(__func__);
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| [2e9486] | 188 |   double result = 0.;
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 | 189 |   for(arguments_t::const_iterator argiter = arguments.begin();
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 | 190 |       argiter != arguments.end();
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 | 191 |       ++argiter) {
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 | 192 |     const argument_t &r_ij = *argiter;
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| [b760bc3] | 193 |     ASSERT( ParticleTypeChecker::checkArgumentsAgainstParticleTypes(
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 | 194 |         arguments_t(1, r_ij), getParticleTypes()),
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 | 195 |         "ManyBodyPotential_Tersoff::operator() - types don't match with ones in arguments.");
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 | 196 |  
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| [2e9486] | 197 |     const double cutoff = function_cutoff(r_ij.distance);
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 | 198 |     const double temp = (cutoff == 0.) ?
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 | 199 |         0. :
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 | 200 |         cutoff * (
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 | 201 |             function_prefactor(
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 | 202 |                 alpha,
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 | 203 |                 function_eta(r_ij))
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 | 204 |             * function_smoother(
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 | 205 |                 params[A],
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 | 206 |                 params[lambda],
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 | 207 |                 r_ij.distance)
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 | 208 |             +
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 | 209 |             function_prefactor(
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 | 210 |                 params[beta],
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 | 211 |                 function_zeta(r_ij))
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 | 212 |             * function_smoother(
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 | 213 |                 -params[B],
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 | 214 |                 params[mu],
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 | 215 |                 r_ij.distance)
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 | 216 |         );
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 | 217 |     result += temp;
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 | 218 |   }
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| [ffc368] | 219 | //  LOG(2, "DEBUG: operator()(" << r_ij.distance << ") = " << result);
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| [b15ae7] | 220 |   return std::vector<result_t>(1, result);
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| [610c11] | 221 | }
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 | 222 | 
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| [ffc368] | 223 | ManyBodyPotential_Tersoff::derivative_components_t
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 | 224 | ManyBodyPotential_Tersoff::derivative(
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 | 225 |     const arguments_t &arguments
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 | 226 |     ) const
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 | 227 | {
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 | 228 | //  Info info(__func__);
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 | 229 |   return ManyBodyPotential_Tersoff::derivative_components_t();
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 | 230 | }
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 | 231 | 
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 | 232 | ManyBodyPotential_Tersoff::results_t
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 | 233 | ManyBodyPotential_Tersoff::parameter_derivative(
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 | 234 |     const arguments_t &arguments,
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 | 235 |     const size_t index
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 | 236 |     ) const
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 | 237 | {
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 | 238 | //  Info info(__func__);
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 | 239 | //  ASSERT( arguments.size() == 1,
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| [2e9486] | 240 | //      "ManyBodyPotential_Tersoff::parameter_derivative() - requires exactly one argument.");
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| [56c5de4] | 241 | 
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| [2e9486] | 242 |   double result = 0.;
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 | 243 |   for(arguments_t::const_iterator argiter = arguments.begin();
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 | 244 |       argiter != arguments.end();
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 | 245 |       ++argiter) {
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 | 246 |     const argument_t &r_ij = *argiter;
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| [b760bc3] | 247 |     ASSERT( ParticleTypeChecker::checkArgumentsAgainstParticleTypes(
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 | 248 |         arguments_t(1, r_ij), getParticleTypes()),
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 | 249 |         "ManyBodyPotential_Tersoff::operator() - types don't match with ones in arguments.");
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| [55fe788] | 250 | 
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| [ffc368] | 251 |   switch (index) {
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| [752dc7] | 252 | //    case R:
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 | 253 | //    {
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| [2e9486] | 254 | //      result += 0.;
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| [752dc7] | 255 | //      break;
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 | 256 | //    }
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 | 257 | //    case S:
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 | 258 | //    {
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| [2e9486] | 259 | //      result += 0.;
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| [752dc7] | 260 | //      break;
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 | 261 | //    }
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| [ffc368] | 262 |     case A:
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 | 263 |     {
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| [ca8d82] | 264 |       const double cutoff = function_cutoff(r_ij.distance);
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| [2e9486] | 265 |       result += (cutoff == 0.) ?
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| [ca8d82] | 266 |           0. :
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 | 267 |           cutoff *
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 | 268 |               function_prefactor(
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 | 269 |                   alpha,
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 | 270 |                   function_eta(r_ij))
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 | 271 |               * function_smoother(
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 | 272 |                   1.,
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 | 273 |                   params[lambda],
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 | 274 |                   r_ij.distance);
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 | 275 | //          cutoff * function_prefactor(
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 | 276 | //              alpha,
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 | 277 | //              function_eta(r_ij))
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 | 278 | //          * function_smoother(
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 | 279 | //              1.,
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 | 280 | //              params[mu],
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 | 281 | //              r_ij.distance);
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| [ffc368] | 282 |       break;
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 | 283 |     }
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 | 284 |     case B:
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 | 285 |     {
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| [ca8d82] | 286 |       const double cutoff = function_cutoff(r_ij.distance);
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| [2e9486] | 287 |       result += (cutoff == 0.) ?
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| [ca8d82] | 288 |           0. :
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 | 289 |           cutoff * function_prefactor(
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 | 290 |               params[beta],
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 | 291 |               function_zeta(r_ij))
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 | 292 |           * function_smoother(
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 | 293 |               -1.,
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 | 294 |               params[mu],
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 | 295 |               r_ij.distance);
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 | 296 | //          cutoff * function_prefactor(
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 | 297 | //              beta,
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 | 298 | //              function_zeta(r_ij))
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 | 299 | //          * function_smoother(
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 | 300 | //              -params[B],
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 | 301 | //              params[mu],
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 | 302 | //              r_ij.distance)/params[B];
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| [ffc368] | 303 |       break;
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 | 304 |     }
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 | 305 |     case lambda:
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 | 306 |     {
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 | 307 |       const double cutoff = function_cutoff(r_ij.distance);
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| [2e9486] | 308 |       result += (cutoff == 0.) ?
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| [ffc368] | 309 |           0. :
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| [ca8d82] | 310 |           -r_ij.distance * cutoff *
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 | 311 |               function_prefactor(
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 | 312 |                   alpha,
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 | 313 |                   function_eta(r_ij))
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 | 314 |               * function_smoother(
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 | 315 |                   params[A],
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 | 316 |                   params[lambda],
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 | 317 |                   r_ij.distance);
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| [ffc368] | 318 |       break;
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 | 319 |     }
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 | 320 |     case mu:
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 | 321 |     {
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 | 322 |       const double cutoff = function_cutoff(r_ij.distance);
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| [2e9486] | 323 |       result += (cutoff == 0.) ?
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| [ffc368] | 324 |           0. :
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| [f904d5] | 325 |           -r_ij.distance * cutoff *(
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| [ffc368] | 326 |           function_prefactor(
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 | 327 |               params[beta],
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 | 328 |               function_zeta(r_ij))
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 | 329 |           * function_smoother(
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 | 330 |               -params[B],
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 | 331 |               params[mu],
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 | 332 |               r_ij.distance)
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 | 333 |       );
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 | 334 |       break;
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 | 335 |     }
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| [990a62] | 336 | //    case lambda3:
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 | 337 | //    {
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| [2e9486] | 338 | //      result += 0.;
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| [990a62] | 339 | //      break;
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 | 340 | //    }
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 | 341 | //    case alpha:
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 | 342 | //    {
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 | 343 | //      const double temp =
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 | 344 | //          pow(alpha*function_eta(r_ij), params[n]);
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 | 345 | //      const double cutoff = function_cutoff(r_ij.distance);
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| [2e9486] | 346 | //      result += (cutoff == 0.) || (alpha == 0. )?
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| [990a62] | 347 | //          0. :
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 | 348 | //          function_smoother(
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| [ca8d82] | 349 | //              params[A],
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| [990a62] | 350 | //              params[lambda],
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 | 351 | //              r_ij.distance)
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 | 352 | //          * (-.5) * alpha * (temp/alpha)
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 | 353 | //          / (1. + temp)
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 | 354 | //          ;
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 | 355 | //      break;
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 | 356 | //    }
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 | 357 | //    case chi:
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 | 358 | //    {
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| [2e9486] | 359 | //      result += 0.;
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| [990a62] | 360 | //      break;
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 | 361 | //    }
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 | 362 | //    case omega:
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 | 363 | //    {
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| [2e9486] | 364 | //      result += 0.;
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| [990a62] | 365 | //      break;
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 | 366 | //    }
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| [ffc368] | 367 |     case beta:
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 | 368 |     {
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 | 369 |       const double temp =
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 | 370 |           pow(params[beta]*function_zeta(r_ij), params[n]);
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 | 371 |       const double cutoff = function_cutoff(r_ij.distance);
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| [2e9486] | 372 |       result += (cutoff == 0.) || (params[beta] == 0. )?
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| [ffc368] | 373 |           0. : cutoff *
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 | 374 |           function_smoother(
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 | 375 |               -params[B],
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 | 376 |               params[mu],
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 | 377 |               r_ij.distance)
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| [f904d5] | 378 |           * (-.5)
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 | 379 |           * function_prefactor(
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 | 380 |               params[beta],
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 | 381 |               function_zeta(r_ij))
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 | 382 |           * (temp/params[beta])
 | 
|---|
| [ffc368] | 383 |           / (1. + temp)
 | 
|---|
 | 384 |           ;
 | 
|---|
 | 385 |       break;
 | 
|---|
 | 386 |     }
 | 
|---|
 | 387 |     case n:
 | 
|---|
 | 388 |     {
 | 
|---|
| [bc55c9] | 389 |       const double zeta = function_zeta(r_ij);
 | 
|---|
 | 390 |       const double temp = pow( params[beta]*zeta , params[n]);
 | 
|---|
| [ffc368] | 391 |       const double cutoff = function_cutoff(r_ij.distance);
 | 
|---|
| [bc55c9] | 392 |       const double tempres = ((cutoff == 0.) || (zeta == 0.)) ? // zeta must be caught if zero due to log
 | 
|---|
| [f904d5] | 393 |           0. : .5 * cutoff *
 | 
|---|
| [ffc368] | 394 |           function_smoother(
 | 
|---|
 | 395 |               -params[B],
 | 
|---|
 | 396 |               params[mu],
 | 
|---|
 | 397 |               r_ij.distance)
 | 
|---|
| [f904d5] | 398 |           * function_prefactor(
 | 
|---|
 | 399 |               params[beta],
 | 
|---|
 | 400 |               function_zeta(r_ij))
 | 
|---|
| [ffc368] | 401 |           * ( log(1.+temp)/(params[n]*params[n]) - temp
 | 
|---|
 | 402 |               * (log(function_zeta(r_ij)) + log(params[beta]))
 | 
|---|
 | 403 |               /(params[n]*(1.+temp)))
 | 
|---|
 | 404 |           ;
 | 
|---|
| [bc55c9] | 405 | //      if (tempres != tempres)
 | 
|---|
 | 406 | //      LOG(2, "DEBUG: tempres is NaN."); 
 | 
|---|
 | 407 | //      LOG(2, "DEBUG: Adding " << tempres << " for p.d. w.r.t n, temp=" << temp << ", cutoff=" << cutoff);
 | 
|---|
 | 408 |       result += tempres;
 | 
|---|
| [ffc368] | 409 |       break;
 | 
|---|
 | 410 |     }
 | 
|---|
 | 411 |     case c:
 | 
|---|
 | 412 |     {
 | 
|---|
| [f904d5] | 413 |       const double zeta = function_zeta(r_ij);
 | 
|---|
| [ca8d82] | 414 |       if (zeta == 0.)
 | 
|---|
 | 415 |         break;
 | 
|---|
| [f904d5] | 416 |       const double temp =
 | 
|---|
| [ca8d82] | 417 |           pow(zeta, params[n]-1.) * pow(params[beta],params[n]);
 | 
|---|
| [f904d5] | 418 |       const double cutoff = function_cutoff(r_ij.distance);
 | 
|---|
| [2e9486] | 419 |       const double tempres = (cutoff == 0.) ?
 | 
|---|
| [ca8d82] | 420 |           0. : cutoff *
 | 
|---|
| [f904d5] | 421 |           function_smoother(
 | 
|---|
 | 422 |               -params[B],
 | 
|---|
 | 423 |               params[mu],
 | 
|---|
 | 424 |               r_ij.distance)
 | 
|---|
 | 425 |           * function_prefactor(
 | 
|---|
 | 426 |               params[beta],
 | 
|---|
 | 427 |               zeta)
 | 
|---|
| [ca8d82] | 428 |            * (-1.) * temp / (1.+temp*zeta);
 | 
|---|
 | 429 |       double factor = function_derivative_c(r_ij);
 | 
|---|
| [2e9486] | 430 |       result += tempres*factor;
 | 
|---|
| [bc55c9] | 431 |       if (result != result)
 | 
|---|
 | 432 |         ELOG(1, "result is NaN, zeta=" << zeta << ", temp=" << temp << ", cutoff=" << cutoff << ", tempres=" << tempres << ", factor=" << factor);
 | 
|---|
| [ffc368] | 433 |       break;
 | 
|---|
 | 434 |     }
 | 
|---|
 | 435 |     case d:
 | 
|---|
 | 436 |     {
 | 
|---|
| [f904d5] | 437 |       const double zeta = function_zeta(r_ij);
 | 
|---|
 | 438 |       const double temp =
 | 
|---|
| [ca8d82] | 439 |           pow(zeta, params[n]-1.) * pow(params[beta],params[n]);
 | 
|---|
| [f904d5] | 440 |       const double cutoff = function_cutoff(r_ij.distance);
 | 
|---|
| [2e9486] | 441 |       const double tempres = (cutoff == 0.) ?
 | 
|---|
| [ca8d82] | 442 |           0. : cutoff *
 | 
|---|
| [f904d5] | 443 |           function_smoother(
 | 
|---|
 | 444 |               -params[B],
 | 
|---|
 | 445 |               params[mu],
 | 
|---|
 | 446 |               r_ij.distance)
 | 
|---|
 | 447 |           * function_prefactor(
 | 
|---|
 | 448 |               params[beta],
 | 
|---|
 | 449 |               zeta)
 | 
|---|
| [ca8d82] | 450 |            * (-1.) * temp / (1.+temp*zeta);
 | 
|---|
 | 451 |       double factor = function_derivative_d(r_ij);
 | 
|---|
| [2e9486] | 452 |       result += tempres*factor;
 | 
|---|
| [bc55c9] | 453 |       if (result != result)
 | 
|---|
 | 454 |         ELOG(1, "result is NaN, zeta=" << zeta << ", temp=" << temp << ", cutoff=" << cutoff << ", tempres=" << tempres << ", factor=" << factor);
 | 
|---|
| [ffc368] | 455 |       break;
 | 
|---|
 | 456 |     }
 | 
|---|
 | 457 |     case h:
 | 
|---|
 | 458 |     {
 | 
|---|
| [f904d5] | 459 |       const double zeta = function_zeta(r_ij);
 | 
|---|
 | 460 |       const double temp =
 | 
|---|
| [ca8d82] | 461 |           pow(zeta, params[n]-1.) * pow(params[beta],params[n]);
 | 
|---|
| [f904d5] | 462 |       const double cutoff = function_cutoff(r_ij.distance);
 | 
|---|
| [2e9486] | 463 |       const double tempres = (cutoff == 0.) ?
 | 
|---|
| [ca8d82] | 464 |           0. : cutoff *
 | 
|---|
| [f904d5] | 465 |           function_smoother(
 | 
|---|
 | 466 |               -params[B],
 | 
|---|
 | 467 |               params[mu],
 | 
|---|
 | 468 |               r_ij.distance)
 | 
|---|
 | 469 |           * function_prefactor(
 | 
|---|
 | 470 |               params[beta],
 | 
|---|
 | 471 |               zeta)
 | 
|---|
| [ca8d82] | 472 |            * (-1.) * temp / (1.+temp*zeta);
 | 
|---|
 | 473 |       double factor = function_derivative_h(r_ij);
 | 
|---|
| [2e9486] | 474 |       result += tempres*factor;
 | 
|---|
| [bc55c9] | 475 |       if (result != result)
 | 
|---|
 | 476 |         ELOG(1, "result is NaN, zeta=" << zeta << ", temp=" << temp << ", cutoff=" << cutoff << ", tempres=" << tempres << ", factor=" << factor);
 | 
|---|
| [ffc368] | 477 |       break;
 | 
|---|
 | 478 |     }
 | 
|---|
 | 479 |     default:
 | 
|---|
| [b15ae7] | 480 |       ASSERT(0, "ManyBodyPotential_Tersoff::parameter_derivative() - derivative to unknown parameter desired.");
 | 
|---|
| [ffc368] | 481 |       break;
 | 
|---|
 | 482 |   }
 | 
|---|
| [bc55c9] | 483 |   if (result != result)
 | 
|---|
 | 484 |     ELOG(1, "result is NaN.");
 | 
|---|
| [2e9486] | 485 |   }
 | 
|---|
 | 486 |   return results_t(1,-result);
 | 
|---|
| [ffc368] | 487 | }
 | 
|---|
 | 488 | 
 | 
|---|
| [ca8d82] | 489 | ManyBodyPotential_Tersoff::result_t
 | 
|---|
 | 490 | ManyBodyPotential_Tersoff::function_derivative_c(
 | 
|---|
 | 491 |     const argument_t &r_ij
 | 
|---|
 | 492 |   ) const
 | 
|---|
 | 493 | {
 | 
|---|
 | 494 |   double result = 0.;
 | 
|---|
 | 495 |   std::vector<arguments_t> triples = triplefunction(r_ij, S);
 | 
|---|
 | 496 |   for (std::vector<arguments_t>::const_iterator iter = triples.begin();
 | 
|---|
 | 497 |       iter != triples.end(); ++iter) {
 | 
|---|
 | 498 |     ASSERT( iter->size() == 2,
 | 
|---|
 | 499 |         "ManyBodyPotential_Tersoff::function_derivative_c() - the triples result must contain exactly two distances.");
 | 
|---|
 | 500 |     const argument_t &r_ik = (*iter)[0];
 | 
|---|
 | 501 |     const argument_t &r_jk = (*iter)[1];
 | 
|---|
 | 502 |     const double tempangle = params[h] - function_theta(r_ij.distance, r_ik.distance, r_jk.distance);
 | 
|---|
 | 503 |     const double cutoff = function_cutoff(r_ik.distance);
 | 
|---|
 | 504 |     result += (cutoff == 0.) ?
 | 
|---|
 | 505 |         0. : cutoff * omega * exp( Helpers::pow(lambda3 * (r_ij.distance - r_ik.distance) ,3)) * (
 | 
|---|
 | 506 |             params[c]/Helpers::pow(params[d],2)
 | 
|---|
 | 507 |             - params[c] / ( Helpers::pow(params[d],2) + Helpers::pow(tempangle,2) )
 | 
|---|
 | 508 |         );
 | 
|---|
 | 509 |   }
 | 
|---|
 | 510 |   return result;
 | 
|---|
 | 511 | }
 | 
|---|
 | 512 | 
 | 
|---|
 | 513 | ManyBodyPotential_Tersoff::result_t
 | 
|---|
 | 514 | ManyBodyPotential_Tersoff::function_derivative_d(
 | 
|---|
 | 515 |     const argument_t &r_ij
 | 
|---|
 | 516 |   ) const
 | 
|---|
 | 517 | {
 | 
|---|
 | 518 |   double result = 0.;
 | 
|---|
 | 519 |   std::vector<arguments_t> triples = triplefunction(r_ij, S);
 | 
|---|
 | 520 |   for (std::vector<arguments_t>::const_iterator iter = triples.begin();
 | 
|---|
 | 521 |       iter != triples.end(); ++iter) {
 | 
|---|
 | 522 |     ASSERT( iter->size() == 2,
 | 
|---|
 | 523 |         "ManyBodyPotential_Tersoff::function_derivative_d() - the triples result must contain exactly two distances.");
 | 
|---|
 | 524 |     const argument_t &r_ik = (*iter)[0];
 | 
|---|
 | 525 |     const argument_t &r_jk = (*iter)[1];
 | 
|---|
 | 526 |     const double tempangle = params[h] - function_theta(r_ij.distance, r_ik.distance, r_jk.distance);
 | 
|---|
 | 527 |     const double cutoff = function_cutoff(r_ik.distance);
 | 
|---|
 | 528 |     result += (cutoff == 0.) ?
 | 
|---|
 | 529 |         0. : cutoff * omega  * exp( Helpers::pow(lambda3 * (r_ij.distance - r_ik.distance) ,3)) * (
 | 
|---|
 | 530 |           - Helpers::pow(params[c],2)/Helpers::pow(params[d],3)
 | 
|---|
 | 531 |           + Helpers::pow(params[c],2) * params[d]
 | 
|---|
 | 532 |             / Helpers::pow(Helpers::pow(params[d],2) + Helpers::pow(tempangle,2),2)
 | 
|---|
 | 533 |         );
 | 
|---|
 | 534 |   }
 | 
|---|
 | 535 |   return result;
 | 
|---|
 | 536 | }
 | 
|---|
 | 537 | 
 | 
|---|
 | 538 | ManyBodyPotential_Tersoff::result_t
 | 
|---|
 | 539 | ManyBodyPotential_Tersoff::function_derivative_h(
 | 
|---|
 | 540 |     const argument_t &r_ij
 | 
|---|
 | 541 |   ) const
 | 
|---|
 | 542 | {
 | 
|---|
 | 543 |   double result = 0.;
 | 
|---|
 | 544 |   std::vector<arguments_t> triples = triplefunction(r_ij, S);
 | 
|---|
 | 545 |   for (std::vector<arguments_t>::const_iterator iter = triples.begin();
 | 
|---|
 | 546 |       iter != triples.end(); ++iter) {
 | 
|---|
 | 547 |     ASSERT( iter->size() == 2,
 | 
|---|
 | 548 |         "ManyBodyPotential_Tersoff::function_derivative_h() - the triples result must contain exactly two distances.");
 | 
|---|
 | 549 |     const argument_t &r_ik = (*iter)[0];
 | 
|---|
 | 550 |     const argument_t &r_jk = (*iter)[1];
 | 
|---|
 | 551 |     const double tempangle = params[h] - function_theta(r_ij.distance, r_ik.distance, r_jk.distance);
 | 
|---|
 | 552 |     const double cutoff = function_cutoff(r_ik.distance);
 | 
|---|
 | 553 |     result += (cutoff == 0.) ?
 | 
|---|
 | 554 |         0. : cutoff * omega  * exp( Helpers::pow(lambda3 * (r_ij.distance - r_ik.distance) ,3)) * (
 | 
|---|
 | 555 |           ( Helpers::pow(params[c],2)*tempangle )
 | 
|---|
 | 556 |             / Helpers::pow(Helpers::pow(params[d],2) + Helpers::pow(tempangle,2),2)
 | 
|---|
 | 557 |         );
 | 
|---|
 | 558 |   }
 | 
|---|
 | 559 |   return result;
 | 
|---|
 | 560 | }
 | 
|---|
 | 561 | 
 | 
|---|
| [4f82f8] | 562 | ManyBodyPotential_Tersoff::result_t
 | 
|---|
| [610c11] | 563 | ManyBodyPotential_Tersoff::function_cutoff(
 | 
|---|
 | 564 |     const double &distance
 | 
|---|
 | 565 |   ) const
 | 
|---|
 | 566 | {
 | 
|---|
| [ffc368] | 567 | //  Info info(__func__);
 | 
|---|
 | 568 |   double result = 0.;
 | 
|---|
| [752dc7] | 569 |   if (distance < R)
 | 
|---|
| [ffc368] | 570 |     result = 1.;
 | 
|---|
| [752dc7] | 571 |   else if (distance > S)
 | 
|---|
| [ffc368] | 572 |     result = 0.;
 | 
|---|
| [610c11] | 573 |   else {
 | 
|---|
| [752dc7] | 574 |     result = (0.5 + 0.5 * cos( M_PI * (distance - R)/(S-R)));
 | 
|---|
| [610c11] | 575 |   }
 | 
|---|
| [ffc368] | 576 | //  LOG(2, "DEBUG: function_cutoff(" << distance << ") = " << result);
 | 
|---|
 | 577 |   return result;
 | 
|---|
| [610c11] | 578 | }
 | 
|---|
 | 579 | 
 | 
|---|
| [4f82f8] | 580 | ManyBodyPotential_Tersoff::result_t
 | 
|---|
| [610c11] | 581 | ManyBodyPotential_Tersoff::function_prefactor(
 | 
|---|
 | 582 |     const double &alpha,
 | 
|---|
| [ffc368] | 583 |     const double &eta
 | 
|---|
| [610c11] | 584 |   ) const
 | 
|---|
 | 585 | {
 | 
|---|
| [ffc368] | 586 | //  Info info(__func__);
 | 
|---|
| [990a62] | 587 |   const double result = chi * pow(
 | 
|---|
| [ffc368] | 588 |       (1. + pow(alpha * eta, params[n])),
 | 
|---|
 | 589 |       -1./(2.*params[n]));
 | 
|---|
 | 590 | //  LOG(2, "DEBUG: function_prefactor(" << alpha << "," << eta << ") = " << result);
 | 
|---|
 | 591 |   return result;
 | 
|---|
 | 592 | }
 | 
|---|
 | 593 | 
 | 
|---|
 | 594 | ManyBodyPotential_Tersoff::result_t
 | 
|---|
 | 595 | ManyBodyPotential_Tersoff::function_smoother(
 | 
|---|
 | 596 |     const double &prefactor,
 | 
|---|
 | 597 |     const double &lambda,
 | 
|---|
 | 598 |     const double &distance
 | 
|---|
 | 599 |     ) const
 | 
|---|
 | 600 | {
 | 
|---|
 | 601 | //  Info info(__func__);
 | 
|---|
 | 602 |   const double result = prefactor * exp(-lambda * distance);
 | 
|---|
 | 603 | //  LOG(2, "DEBUG: function_smoother(" << prefactor << "," << lambda << "," << distance << ") = " << result);
 | 
|---|
 | 604 |   return result;
 | 
|---|
| [610c11] | 605 | }
 | 
|---|
 | 606 | 
 | 
|---|
| [4f82f8] | 607 | ManyBodyPotential_Tersoff::result_t
 | 
|---|
| [610c11] | 608 | ManyBodyPotential_Tersoff::function_eta(
 | 
|---|
 | 609 |     const argument_t &r_ij
 | 
|---|
 | 610 |   ) const
 | 
|---|
 | 611 | {
 | 
|---|
| [ffc368] | 612 | //  Info info(__func__);
 | 
|---|
| [610c11] | 613 |   result_t result = 0.;
 | 
|---|
 | 614 | 
 | 
|---|
 | 615 |   // get all triples within the cutoff
 | 
|---|
| [752dc7] | 616 |   std::vector<arguments_t> triples = triplefunction(r_ij, S);
 | 
|---|
| [610c11] | 617 |   for (std::vector<arguments_t>::const_iterator iter = triples.begin();
 | 
|---|
 | 618 |       iter != triples.end(); ++iter) {
 | 
|---|
 | 619 |     ASSERT( iter->size() == 2,
 | 
|---|
 | 620 |         "ManyBodyPotential_Tersoff::function_zeta() - the triples result must contain of exactly two distances.");
 | 
|---|
 | 621 |     const argument_t &r_ik = (*iter)[0];
 | 
|---|
 | 622 |     result += function_cutoff(r_ik.distance)
 | 
|---|
| [990a62] | 623 |         * exp( Helpers::pow(lambda3 * (r_ij.distance - r_ik.distance) ,3));
 | 
|---|
| [610c11] | 624 |   }
 | 
|---|
 | 625 | 
 | 
|---|
| [ffc368] | 626 | //  LOG(2, "DEBUG: function_eta(" << r_ij.distance << ") = " << result);
 | 
|---|
| [610c11] | 627 |   return result;
 | 
|---|
 | 628 | }
 | 
|---|
 | 629 | 
 | 
|---|
| [4f82f8] | 630 | ManyBodyPotential_Tersoff::result_t
 | 
|---|
| [610c11] | 631 | ManyBodyPotential_Tersoff::function_zeta(
 | 
|---|
 | 632 |     const argument_t &r_ij
 | 
|---|
 | 633 |   ) const
 | 
|---|
 | 634 | {
 | 
|---|
| [ffc368] | 635 | //  Info info(__func__);
 | 
|---|
| [610c11] | 636 |   result_t result = 0.;
 | 
|---|
 | 637 | 
 | 
|---|
 | 638 |   // get all triples within the cutoff
 | 
|---|
| [752dc7] | 639 |   std::vector<arguments_t> triples = triplefunction(r_ij, S);
 | 
|---|
| [610c11] | 640 |   for (std::vector<arguments_t>::const_iterator iter = triples.begin();
 | 
|---|
 | 641 |       iter != triples.end(); ++iter) {
 | 
|---|
 | 642 |     ASSERT( iter->size() == 2,
 | 
|---|
 | 643 |         "ManyBodyPotential_Tersoff::function_zeta() - the triples result must contain exactly two distances.");
 | 
|---|
 | 644 |     const argument_t &r_ik = (*iter)[0];
 | 
|---|
 | 645 |     const argument_t &r_jk = (*iter)[1];
 | 
|---|
 | 646 |     result +=
 | 
|---|
 | 647 |         function_cutoff(r_ik.distance)
 | 
|---|
| [990a62] | 648 |         * omega
 | 
|---|
| [610c11] | 649 |         * function_angle(r_ij.distance, r_ik.distance, r_jk.distance)
 | 
|---|
| [990a62] | 650 |         * exp( Helpers::pow(lambda3 * (r_ij.distance - r_ik.distance) ,3));
 | 
|---|
| [610c11] | 651 |   }
 | 
|---|
 | 652 | 
 | 
|---|
| [ffc368] | 653 | //  LOG(2, "DEBUG: function_zeta(" << r_ij.distance << ") = " << result);
 | 
|---|
| [610c11] | 654 |   return result;
 | 
|---|
 | 655 | }
 | 
|---|
 | 656 | 
 | 
|---|
| [4f82f8] | 657 | ManyBodyPotential_Tersoff::result_t
 | 
|---|
| [f904d5] | 658 | ManyBodyPotential_Tersoff::function_theta(
 | 
|---|
| [610c11] | 659 |     const double &r_ij,
 | 
|---|
 | 660 |     const double &r_ik,
 | 
|---|
 | 661 |     const double &r_jk
 | 
|---|
 | 662 |   ) const
 | 
|---|
 | 663 | {
 | 
|---|
 | 664 |   const double angle = Helpers::pow(r_ij,2) + Helpers::pow(r_ik,2) - Helpers::pow(r_jk,2);
 | 
|---|
| [ffc368] | 665 |   const double divisor = 2.* r_ij * r_ik;
 | 
|---|
 | 666 |   if (divisor != 0.) {
 | 
|---|
| [f904d5] | 667 |     LOG(2, "DEBUG: cos(theta)= " << angle/divisor);
 | 
|---|
 | 668 |     return angle/divisor;
 | 
|---|
| [ffc368] | 669 |   } else
 | 
|---|
 | 670 |     return 0.;
 | 
|---|
| [610c11] | 671 | }
 | 
|---|
| [ffc368] | 672 | 
 | 
|---|
| [f904d5] | 673 | ManyBodyPotential_Tersoff::result_t
 | 
|---|
 | 674 | ManyBodyPotential_Tersoff::function_angle(
 | 
|---|
 | 675 |     const double &r_ij,
 | 
|---|
 | 676 |     const double &r_ik,
 | 
|---|
 | 677 |     const double &r_jk
 | 
|---|
 | 678 |   ) const
 | 
|---|
 | 679 | {
 | 
|---|
 | 680 | //  Info info(__func__);
 | 
|---|
 | 681 |   const double result =
 | 
|---|
 | 682 |       1.
 | 
|---|
 | 683 |       + (Helpers::pow(params[c]/params[d], 2))
 | 
|---|
 | 684 |       - Helpers::pow(params[c], 2)/(Helpers::pow(params[d], 2) +
 | 
|---|
| [ca8d82] | 685 |           Helpers::pow(params[h] - function_theta(r_ij, r_ik, r_jk),2));
 | 
|---|
| [f904d5] | 686 | 
 | 
|---|
| [ca8d82] | 687 | //  LOG(2, "DEBUG: function_angle(" << r_ij << "," << r_ik << "," << r_jk << ") = " << result);
 | 
|---|
| [f904d5] | 688 |   return result;
 | 
|---|
 | 689 | }
 | 
|---|
 | 690 | 
 | 
|---|
| [7b019a] | 691 | FunctionModel::extractor_t
 | 
|---|
| [f0025d] | 692 | ManyBodyPotential_Tersoff::getSpecificExtractor() const
 | 
|---|
| [7b019a] | 693 | {
 | 
|---|
 | 694 |   FunctionModel::extractor_t returnfunction =
 | 
|---|
 | 695 |       boost::bind(&Extractors::gatherAllDistances,
 | 
|---|
 | 696 |           boost::bind(&Fragment::getPositions, _1),
 | 
|---|
 | 697 |           boost::bind(&Fragment::getCharges, _1),
 | 
|---|
 | 698 |           _2);
 | 
|---|
 | 699 |   return returnfunction;
 | 
|---|
 | 700 | }
 | 
|---|
 | 701 | 
 | 
|---|
| [0f5d38] | 702 | FunctionModel::filter_t ManyBodyPotential_Tersoff::getSpecificFilter() const
 | 
|---|
 | 703 | {
 | 
|---|
 | 704 |   FunctionModel::filter_t returnfunction =
 | 
|---|
| [51e0e3] | 705 |       boost::bind(&Extractors::filterArgumentsByParticleTypes,
 | 
|---|
 | 706 |           _1,
 | 
|---|
 | 707 |           getParticleTypes());
 | 
|---|
| [0f5d38] | 708 |   return returnfunction;
 | 
|---|
 | 709 | }
 | 
|---|
 | 710 | 
 | 
|---|
| [d52819] | 711 | void
 | 
|---|
 | 712 | ManyBodyPotential_Tersoff::setParametersToRandomInitialValues(
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 | 713 |     const TrainingData &data)
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 | 714 | {
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 | 715 | //  params[ManyBodyPotential_Tersoff::R] = 1./AtomicLengthToAngstroem;
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 | 716 | //  params[ManyBodyPotential_Tersoff::S] = 2./AtomicLengthToAngstroem;
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 | 717 |   params[ManyBodyPotential_Tersoff::A] = 1e+4*rand()/(double)RAND_MAX;//1.393600e+03;
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 | 718 |   params[ManyBodyPotential_Tersoff::B] = 1e+4*rand()/(double)RAND_MAX;//3.467000e+02;
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 | 719 |   params[ManyBodyPotential_Tersoff::lambda] = 1e+1*rand()/(double)RAND_MAX;//3.487900e+00;
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 | 720 |   params[ManyBodyPotential_Tersoff::mu] = 1e+1*rand()/(double)RAND_MAX;//2.211900e+00;
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 | 721 |   //  params[ManyBodyPotential_Tersoff::lambda3] = 0.;
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 | 722 |   //  params[ManyBodyPotential_Tersoff::alpha] = 0.;
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 | 723 |   params[ManyBodyPotential_Tersoff::beta] = 1e-1*rand()/(double)RAND_MAX;//1.572400e-07;
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 | 724 |   //  params[ManyBodyPotential_Tersoff::chi] = 1.;
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 | 725 |   //  params[ManyBodyPotential_Tersoff::omega] = 1.;
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 | 726 |   params[ManyBodyPotential_Tersoff::n] = 1e+1*rand()/(double)RAND_MAX;//7.275100e-01;
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 | 727 |   params[ManyBodyPotential_Tersoff::c] = 1e+1*rand()/(double)RAND_MAX;//3.804900e+04;
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 | 728 |   params[ManyBodyPotential_Tersoff::d] = 1e+1*rand()/(double)RAND_MAX;//4.384000e+00;
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 | 729 |   params[ManyBodyPotential_Tersoff::h] = 1e+1*rand()/(double)RAND_MAX;//-5.705800e-01;
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 | 730 | }
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 | 731 | 
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