[194649] | 1 | /*
|
---|
| 2 | * Langevin.cpp
|
---|
| 3 | *
|
---|
| 4 | * Created on: Aug 20, 2010
|
---|
| 5 | * Author: crueger
|
---|
| 6 | */
|
---|
| 7 |
|
---|
| 8 | #include "Langevin.hpp"
|
---|
| 9 | #include "element.hpp"
|
---|
| 10 | #include "config.hpp"
|
---|
| 11 | #include "Helpers/Verbose.hpp"
|
---|
| 12 | #include "Helpers/Log.hpp"
|
---|
| 13 | #include "ThermoStatContainer.hpp"
|
---|
| 14 |
|
---|
[c0c650] | 15 | Langevin::Langevin(double _TempFrequency,double _alpha) :
|
---|
| 16 | TempFrequency(_TempFrequency),
|
---|
| 17 | alpha(_alpha)
|
---|
[194649] | 18 | {
|
---|
| 19 | gsl_rng_env_setup();
|
---|
| 20 | T = gsl_rng_default;
|
---|
| 21 | r = gsl_rng_alloc (T);
|
---|
| 22 | }
|
---|
| 23 |
|
---|
[3e4162] | 24 | Langevin::Langevin() :
|
---|
| 25 | TempFrequency(2.5),
|
---|
| 26 | alpha(0.)
|
---|
| 27 | {}
|
---|
| 28 |
|
---|
[194649] | 29 | Langevin::~Langevin()
|
---|
| 30 | {
|
---|
| 31 | gsl_rng_free (r);
|
---|
| 32 | }
|
---|
| 33 |
|
---|
[14c57a] | 34 | const char *ThermostatTraits<Langevin>::name = "Langevin";
|
---|
| 35 |
|
---|
| 36 | std::string ThermostatTraits<Langevin>::getName(){
|
---|
| 37 | return ThermostatTraits<Langevin>::name;
|
---|
| 38 | }
|
---|
[579a81] | 39 |
|
---|
[14c57a] | 40 | Thermostat *ThermostatTraits<Langevin>::make(class ConfigFileBuffer * const fb){
|
---|
[c0c650] | 41 | double TempFrequency;
|
---|
| 42 | double alpha;
|
---|
| 43 | const int verbose = 0;
|
---|
| 44 | ParseForParameter(verbose,fb,"Thermostat", 0, 2, 1, double_type, &TempFrequency, 1, critical); // read gamma
|
---|
| 45 | if (ParseForParameter(verbose,fb,"Thermostat", 0, 3, 1, double_type, &alpha, 1, optional)) {
|
---|
| 46 | DoLog(2) && (Log() << Verbose(2) << "Extended Stochastic Thermostat detected with interpolation coefficient " << alpha << "." << endl);
|
---|
| 47 | } else {
|
---|
| 48 | alpha = 1.;
|
---|
| 49 | }
|
---|
[14c57a] | 50 | return new Langevin(TempFrequency,alpha);
|
---|
[c0c650] | 51 | }
|
---|
| 52 |
|
---|
[579a81] | 53 | double Langevin::scaleAtoms(unsigned int step,double ActualTemp,ATOMSET(std::list) atoms){
|
---|
| 54 | return doScaleAtoms(step,ActualTemp,atoms.begin(),atoms.end());
|
---|
[194649] | 55 | }
|
---|
| 56 |
|
---|
[579a81] | 57 | double Langevin::scaleAtoms(unsigned int step,double ActualTemp,ATOMSET(std::vector) atoms){
|
---|
| 58 | return doScaleAtoms(step,ActualTemp,atoms.begin(),atoms.end());
|
---|
[194649] | 59 | }
|
---|
| 60 |
|
---|
[579a81] | 61 | double Langevin::scaleAtoms(unsigned int step,double ActualTemp,ATOMSET(std::set) atoms){
|
---|
| 62 | return doScaleAtoms(step,ActualTemp,atoms.begin(),atoms.end());
|
---|
[194649] | 63 | }
|
---|
| 64 |
|
---|
| 65 | template <class ForwardIterator>
|
---|
[579a81] | 66 | double Langevin::doScaleAtoms(unsigned int step,double ActualTemp,ForwardIterator begin, ForwardIterator end){
|
---|
[194649] | 67 | DoLog(2) && (Log() << Verbose(2) << "Applying Langevin thermostat..." << endl);
|
---|
| 68 | double ekin=0;
|
---|
| 69 | for(ForwardIterator iter=begin;iter!=end;++iter){
|
---|
[51c3e4] | 70 | double sigma = sqrt(getContainer().TargetTemp/(*iter)->getType()->getMass()); // sigma = (k_b T)/m (Hartree/atomicmass = atomiclength/atomictime)
|
---|
[194649] | 71 | Vector &U = (*iter)->Trajectory.U.at(step);
|
---|
| 72 | if ((*iter)->FixedIon == 0) { // even FixedIon moves, only not by other's forces
|
---|
| 73 | // throw a dice to determine whether it gets hit by a heat bath particle
|
---|
[579a81] | 74 | if (((((rand()/(double)RAND_MAX))*TempFrequency) < 1.)) {
|
---|
[c0c650] | 75 | DoLog(3) && (Log() << Verbose(3) << "Particle " << (**iter) << " was hit (sigma " << sigma << "): " << U.Norm() << " -> ");
|
---|
[194649] | 76 | // pick three random numbers from a Boltzmann distribution around the desired temperature T for each momenta axis
|
---|
| 77 | for (int d=0; d<NDIM; d++) {
|
---|
| 78 | U[d] = gsl_ran_gaussian (r, sigma);
|
---|
| 79 | }
|
---|
[c0c650] | 80 | DoLog(2) && (Log() << Verbose(2) << U.Norm() << endl);
|
---|
[194649] | 81 | }
|
---|
[51c3e4] | 82 | ekin += 0.5*(*iter)->getType()->getMass() * U.NormSquared();
|
---|
[194649] | 83 | }
|
---|
| 84 | }
|
---|
| 85 | return ekin;
|
---|
| 86 | }
|
---|
[579a81] | 87 |
|
---|
| 88 | std::string Langevin::name(){
|
---|
[14c57a] | 89 | return ThermostatTraits<Langevin>::name;
|
---|
[579a81] | 90 | }
|
---|
| 91 |
|
---|
| 92 | std::string Langevin::writeParams(){
|
---|
| 93 | stringstream sstr;
|
---|
| 94 | sstr << TempFrequency << "\t" << alpha;
|
---|
| 95 | return sstr.str();
|
---|
| 96 | }
|
---|