source: src/Thermostats/Langevin.cpp

Candidate_v1.6.1
Last change on this file was 9eb71b3, checked in by Frederik Heber <frederik.heber@…>, 8 years ago

Commented out MemDebug include and Memory::ignore.

  • MemDebug clashes with various allocation operators that use a specific placement in memory. It is so far not possible to wrap new/delete fully. Hence, we stop this effort which so far has forced us to put ever more includes (with clashes) into MemDebug and thereby bloat compilation time.
  • MemDebug does not add that much usefulness which is not also provided by valgrind.
  • Property mode set to 100644
File size: 4.8 KB
RevLine 
[abae35]1/*
2 * Project: MoleCuilder
3 * Description: creates and alters molecular systems
[0aa122]4 * Copyright (C) 2010-2012 University of Bonn. All rights reserved.
[94d5ac6]5 *
6 *
7 * This file is part of MoleCuilder.
8 *
9 * MoleCuilder is free software: you can redistribute it and/or modify
10 * it under the terms of the GNU General Public License as published by
11 * the Free Software Foundation, either version 2 of the License, or
12 * (at your option) any later version.
13 *
14 * MoleCuilder is distributed in the hope that it will be useful,
15 * but WITHOUT ANY WARRANTY; without even the implied warranty of
16 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
17 * GNU General Public License for more details.
18 *
19 * You should have received a copy of the GNU General Public License
20 * along with MoleCuilder. If not, see <http://www.gnu.org/licenses/>.
[abae35]21 */
22
[194649]23/*
24 * Langevin.cpp
25 *
26 * Created on: Aug 20, 2010
27 * Author: crueger
28 */
29
[d2b28f]30// include config.h
31#ifdef HAVE_CONFIG_H
32#include <config.h>
33#endif
34
[9eb71b3]35//#include "CodePatterns/MemDebug.hpp"
[d2b28f]36
[194649]37#include "Langevin.hpp"
[41a467]38
[ad011c]39#include "CodePatterns/Log.hpp"
[41a467]40#include "Parser/PcpParser_helper.hpp"
41#include "Element/element.hpp"
[255829]42#include "Helpers/defs.hpp"
[ab26c3]43#include "Thermostats/ThermoStatContainer.hpp"
[194649]44
[6625c3]45#include <boost/random/mersenne_twister.hpp>
46#include <boost/random/normal_distribution.hpp>
47#include <boost/random/variate_generator.hpp>
48
[a5028f]49#include "RandomNumbers/RandomNumberGeneratorFactory.hpp"
50#include "RandomNumbers/RandomNumberGenerator.hpp"
51
[c0c650]52Langevin::Langevin(double _TempFrequency,double _alpha) :
53 TempFrequency(_TempFrequency),
[6625c3]54 alpha(_alpha),
55 rng_engine(new boost::mt19937),
56 rng_distribution(NULL)
57{}
[194649]58
[3e4162]59Langevin::Langevin() :
60 TempFrequency(2.5),
[6625c3]61 alpha(0.),
62 rng_engine(new boost::mt19937),
63 rng_distribution(NULL)
[3e4162]64{}
65
[194649]66Langevin::~Langevin()
67{
[6625c3]68 delete rng_engine;
69 delete rng_distribution;
[194649]70}
71
[14c57a]72const char *ThermostatTraits<Langevin>::name = "Langevin";
73
74std::string ThermostatTraits<Langevin>::getName(){
75 return ThermostatTraits<Langevin>::name;
76}
[579a81]77
[14c57a]78Thermostat *ThermostatTraits<Langevin>::make(class ConfigFileBuffer * const fb){
[c0c650]79 double TempFrequency;
80 double alpha;
81 const int verbose = 0;
82 ParseForParameter(verbose,fb,"Thermostat", 0, 2, 1, double_type, &TempFrequency, 1, critical); // read gamma
83 if (ParseForParameter(verbose,fb,"Thermostat", 0, 3, 1, double_type, &alpha, 1, optional)) {
[47d041]84 LOG(2, "Extended Stochastic Thermostat detected with interpolation coefficient " << alpha << ".");
[c0c650]85 } else {
86 alpha = 1.;
87 }
[14c57a]88 return new Langevin(TempFrequency,alpha);
[c0c650]89}
90
[579a81]91double Langevin::scaleAtoms(unsigned int step,double ActualTemp,ATOMSET(std::list) atoms){
92 return doScaleAtoms(step,ActualTemp,atoms.begin(),atoms.end());
[194649]93}
94
[579a81]95double Langevin::scaleAtoms(unsigned int step,double ActualTemp,ATOMSET(std::vector) atoms){
96 return doScaleAtoms(step,ActualTemp,atoms.begin(),atoms.end());
[194649]97}
98
[579a81]99double Langevin::scaleAtoms(unsigned int step,double ActualTemp,ATOMSET(std::set) atoms){
100 return doScaleAtoms(step,ActualTemp,atoms.begin(),atoms.end());
[194649]101}
102
103template <class ForwardIterator>
[579a81]104double Langevin::doScaleAtoms(unsigned int step,double ActualTemp,ForwardIterator begin, ForwardIterator end){
[47d041]105 LOG(2, "Applying Langevin thermostat...");
[6625c3]106 RandomNumberGenerator &random = RandomNumberGeneratorFactory::getInstance().makeRandomNumberGenerator("mt19937", "normal_distribution");
[a5028f]107 const double rng_min = random.min();
108 const double rng_max = random.max();
[194649]109 double ekin=0;
110 for(ForwardIterator iter=begin;iter!=end;++iter){
[51c3e4]111 double sigma = sqrt(getContainer().TargetTemp/(*iter)->getType()->getMass()); // sigma = (k_b T)/m (Hartree/atomicmass = atomiclength/atomictime)
[6625c3]112 rng_distribution = new boost::normal_distribution<>(0,sigma);
113 boost::variate_generator<boost::mt19937&, boost::normal_distribution<> > rng(*rng_engine, *rng_distribution);
[056e70]114 Vector U = (*iter)->getAtomicVelocityAtStep(step);
[6625c3]115 if ((*iter)->getFixedIon() == 0) { // even FixedIon moves, only not by other's forces
[194649]116 // throw a dice to determine whether it gets hit by a heat bath particle
[a5028f]117 if (((((random()/(rng_max-rng_min)))*TempFrequency) < 1.)) {
[194649]118 // pick three random numbers from a Boltzmann distribution around the desired temperature T for each momenta axis
[47d041]119 const double oldNorm = U.Norm();
120 for (int d=0; d<NDIM; d++)
[6625c3]121 U[d] = rng();
[47d041]122 LOG(3, "Particle " << (**iter) << " was hit (sigma " << sigma << "): " << oldNorm << " -> " << U.Norm());
[194649]123 }
[51c3e4]124 ekin += 0.5*(*iter)->getType()->getMass() * U.NormSquared();
[194649]125 }
[056e70]126 (*iter)->setAtomicVelocityAtStep(step, U);
[6625c3]127 delete rng_distribution;
128 rng_distribution = NULL;
[194649]129 }
130 return ekin;
131}
[579a81]132
133std::string Langevin::name(){
[14c57a]134 return ThermostatTraits<Langevin>::name;
[579a81]135}
136
137std::string Langevin::writeParams(){
138 stringstream sstr;
139 sstr << TempFrequency << "\t" << alpha;
140 return sstr.str();
141}
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