| 1 | /* | 
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| 2 | * VerletForceIntegration.hpp | 
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| 3 | * | 
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| 4 | *  Created on: Feb 23, 2011 | 
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| 5 | *      Author: heber | 
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| 6 | */ | 
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| 7 |  | 
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| 8 | #ifndef VERLETFORCEINTEGRATION_HPP_ | 
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| 9 | #define VERLETFORCEINTEGRATION_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 "Atom/atom.hpp" | 
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| 17 | #include "Atom/AtomSet.hpp" | 
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| 18 | #include "CodePatterns/Assert.hpp" | 
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| 19 | #include "CodePatterns/Info.hpp" | 
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| 20 | #include "CodePatterns/Log.hpp" | 
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| 21 | #include "CodePatterns/Verbose.hpp" | 
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| 22 | #include "Dynamics/MinimiseConstrainedPotential.hpp" | 
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| 23 | #include "Fragmentation/ForceMatrix.hpp" | 
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| 24 | #include "Helpers/helpers.hpp" | 
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| 25 | #include "Helpers/defs.hpp" | 
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| 26 | #include "LinearAlgebra/Vector.hpp" | 
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| 27 | #include "Thermostats/ThermoStatContainer.hpp" | 
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| 28 | #include "Thermostats/Thermostat.hpp" | 
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| 29 | #include "World.hpp" | 
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| 30 |  | 
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| 31 | template <class T> | 
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| 32 | class VerletForceIntegration | 
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| 33 | { | 
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| 34 | public: | 
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| 35 | /** Constructor of class VerletForceIntegration. | 
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| 36 | * | 
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| 37 | * \param _atoms set of atoms to integrate | 
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| 38 | * \param _Deltat time step width in atomic units | 
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| 39 | * \param _IsAngstroem whether length units are in angstroem or bohr radii | 
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| 40 | */ | 
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| 41 | VerletForceIntegration(AtomSetMixin<T> &_atoms, double _Deltat, bool _IsAngstroem) : | 
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| 42 | Deltat(_Deltat), | 
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| 43 | IsAngstroem(_IsAngstroem), | 
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| 44 | atoms(_atoms) | 
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| 45 | {} | 
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| 46 | /** Destructor of class VerletForceIntegration. | 
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| 47 | * | 
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| 48 | */ | 
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| 49 | ~VerletForceIntegration() | 
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| 50 | {} | 
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| 51 |  | 
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| 52 | /** Parses nuclear forces from file. | 
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| 53 | * Forces are stored in the time step \a TimeStep in the atomicForces in \a atoms. | 
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| 54 | * \param *file filename | 
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| 55 | * \param TimeStep time step to parse forces file into | 
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| 56 | * \return true - file parsed, false - file not found or imparsable | 
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| 57 | */ | 
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| 58 | bool parseForcesFile(const char *file, const int TimeStep) | 
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| 59 | { | 
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| 60 | Info FunctionInfo(__func__); | 
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| 61 | ForceMatrix Force; | 
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| 62 |  | 
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| 63 | // parse file into ForceMatrix | 
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| 64 | std::ifstream input(file); | 
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| 65 | if ((input.good()) && (!Force.ParseMatrix(input, 0,0,0))) { | 
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| 66 | ELOG(0, "Could not parse Force Matrix file " << file << "."); | 
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| 67 | return false; | 
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| 68 | } | 
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| 69 | input.close(); | 
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| 70 | if (Force.RowCounter[0] != (int)atoms.size()) { | 
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| 71 | ELOG(0, "Mismatch between number of atoms in file " << Force.RowCounter[0] << " and in molecule " << atoms.size() << "."); | 
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| 72 | return false; | 
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| 73 | } | 
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| 74 |  | 
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| 75 | addForceMatrixToAtomicForce(Force, TimeStep, 1); | 
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| 76 | return true; | 
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| 77 | } | 
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| 78 |  | 
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| 79 | /** Performs Verlet integration. | 
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| 80 | * Note that we assume the parsed forces to be in atomic units (hence, if coordinates are in angstroem, we | 
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| 81 | * have to transform them). | 
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| 82 | * This adds a new MD step \f$ t + \Delta t \f$ to the config file. | 
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| 83 | * \param NextStep current time step (i.e. \f$ t + \Delta t \f$ in the sense of the velocity verlet) | 
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| 84 | * \param offset offset in matrix file to the first force component | 
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| 85 | * \param DoConstrainedMD whether a constrained MD shall be done | 
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| 86 | * \param FixedCenterOfMass whether forces and velocities are correct to have fixed center of mass | 
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| 87 | * \return true - file found and parsed, false - no atoms, file not found or imparsable | 
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| 88 | * \todo This is not yet checked if it is correctly working with DoConstrainedMD set >0. | 
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| 89 | */ | 
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| 90 | bool operator()(const int NextStep, const size_t offset, const int DoConstrainedMD, const bool FixedCenterOfMass) | 
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| 91 | { | 
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| 92 | Info FunctionInfo(__func__); | 
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| 93 |  | 
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| 94 | // check that atoms are present at all | 
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| 95 | if (atoms.size() == 0) { | 
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| 96 | ELOG(2, "VerletForceIntegration::operator() - no atoms to integrate."); | 
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| 97 | return false; | 
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| 98 | } | 
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| 99 |  | 
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| 100 | // make sum of forces equal zero | 
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| 101 | if (FixedCenterOfMass) | 
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| 102 | correctForceMatrixForFixedCenterOfMass(offset,NextStep); | 
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| 103 |  | 
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| 104 | // solve a constrained potential if we are meant to | 
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| 105 | if (DoConstrainedMD) { | 
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| 106 | performConstraintMinimization(DoConstrainedMD,NextStep); | 
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| 107 | } | 
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| 108 |  | 
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| 109 | //std::cout << "Force before velocity verlet, " << Force << std::endl; | 
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| 110 | // and perform Verlet integration for each atom with position, velocity and force vector | 
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| 111 | // check size of vectors | 
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| 112 | for(typename AtomSetMixin<T>::iterator iter = atoms.begin(); iter != atoms.end(); ++iter) { | 
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| 113 | //std::cout << "Id of atom is " << (*iter)->getId() << std::endl; | 
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| 114 | (*iter)->VelocityVerletUpdate((*iter)->getId(), NextStep, Deltat, IsAngstroem); | 
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| 115 | } | 
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| 116 |  | 
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| 117 | // make sum of velocities equal zero | 
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| 118 | if (FixedCenterOfMass) | 
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| 119 | correctVelocitiesForFixedCenterOfMass(NextStep); | 
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| 120 |  | 
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| 121 | // thermostat | 
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| 122 | performThermostatControl(NextStep); | 
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| 123 |  | 
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| 124 | // exit | 
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| 125 | return true; | 
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| 126 | }; | 
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| 127 |  | 
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| 128 | private: | 
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| 129 | void addForceMatrixToAtomicForce(const ForceMatrix &Force, const int &TimeStep, const int offset) | 
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| 130 | { | 
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| 131 | // place forces from matrix into atoms | 
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| 132 | Vector tempVector; | 
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| 133 | size_t i=0; | 
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| 134 | for(typename AtomSetMixin<T>::iterator iter = atoms.begin(); iter != atoms.end(); ++iter,++i) { | 
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| 135 | for(size_t d=0;d<NDIM;d++) { | 
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| 136 | tempVector[d] = Force.Matrix[0][i][d+offset]*(IsAngstroem ? AtomicLengthToAngstroem : 1.); | 
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| 137 | } | 
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| 138 | tempVector += (*iter)->getAtomicForceAtStep(TimeStep); | 
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| 139 | (*iter)->setAtomicForceAtStep(TimeStep, tempVector); | 
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| 140 | } | 
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| 141 | } | 
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| 142 |  | 
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| 143 | void correctForceMatrixForFixedCenterOfMass(const size_t offset, const int &TimeStep) { | 
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| 144 | Vector ForceVector; | 
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| 145 | // correct Forces | 
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| 146 | //std::cout << "Force before correction, " << Force << std::endl; | 
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| 147 | ForceVector.Zero(); | 
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| 148 | for(typename AtomSetMixin<T>::iterator iter = atoms.begin(); iter != atoms.end(); ++iter) { | 
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| 149 | ForceVector += (*iter)->getAtomicForceAtStep(TimeStep); | 
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| 150 | } | 
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| 151 | ForceVector.Scale(1./(double)atoms.size()); | 
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| 152 | //std::cout << "Force before second correction, " << Force << std::endl; | 
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| 153 | for(typename AtomSetMixin<T>::iterator iter = atoms.begin(); iter != atoms.end(); ++iter) { | 
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| 154 | const Vector tempVector = (*iter)->getAtomicForceAtStep(TimeStep) - ForceVector; | 
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| 155 | (*iter)->setAtomicForceAtStep(TimeStep, tempVector); | 
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| 156 | } | 
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| 157 | LOG(3, "INFO: forces correct by " << ForceVector << "each."); | 
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| 158 | } | 
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| 159 |  | 
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| 160 | void correctVelocitiesForFixedCenterOfMass(const int &TimeStep) { | 
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| 161 | Vector Velocity; | 
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| 162 | double IonMass; | 
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| 163 | // correct velocities (rather momenta) so that center of mass remains motionless | 
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| 164 | Velocity = atoms.totalMomentumAtStep(TimeStep); | 
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| 165 | IonMass = atoms.totalMass(); | 
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| 166 |  | 
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| 167 | // correct velocities (rather momenta) so that center of mass remains motionless | 
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| 168 | Velocity *= 1./IonMass; | 
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| 169 | atoms.addVelocityAtStep(-1.*Velocity,TimeStep); | 
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| 170 |  | 
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| 171 | LOG(3, "INFO: Velocities corrected by " << Velocity << " each."); | 
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| 172 | } | 
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| 173 |  | 
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| 174 | void performConstraintMinimization(const int &DoConstrainedMD, const int &TimeStep) { | 
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| 175 | // calculate forces and potential | 
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| 176 | ForceMatrix Force; | 
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| 177 | std::map<atom *, atom*> PermutationMap; | 
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| 178 | MinimiseConstrainedPotential Minimiser(atoms, PermutationMap); | 
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| 179 | //double ConstrainedPotentialEnergy = | 
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| 180 | Minimiser(DoConstrainedMD, 0, IsAngstroem); | 
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| 181 | Minimiser.EvaluateConstrainedForces(&Force); | 
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| 182 | addForceMatrixToAtomicForce(Force, TimeStep, 1); | 
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| 183 | } | 
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| 184 |  | 
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| 185 | void performThermostatControl(const int &TimeStep) { | 
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| 186 | double ActualTemp; | 
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| 187 |  | 
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| 188 | // calculate current temperature | 
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| 189 | ActualTemp = atoms.totalTemperatureAtStep(TimeStep); | 
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| 190 | LOG(3, "INFO: Current temperature is " << ActualTemp); | 
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| 191 |  | 
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| 192 | // rescale to desired value | 
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| 193 | double ekin = World::getInstance().getThermostats()->getActive()->scaleAtoms(TimeStep,ActualTemp,atoms); | 
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| 194 | ActualTemp = atoms.totalTemperatureAtStep(TimeStep); | 
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| 195 | LOG(3, "INFO: New temperature after thermostat is " << ActualTemp); | 
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| 196 | LOG(1, "Kinetic energy is " << ekin << "."); | 
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| 197 | } | 
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| 198 |  | 
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| 199 | private: | 
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| 200 | double Deltat; | 
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| 201 | bool IsAngstroem; | 
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| 202 | AtomSetMixin<T> atoms; | 
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| 203 | }; | 
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| 204 |  | 
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| 205 | #endif /* VERLETFORCEINTEGRATION_HPP_ */ | 
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