| [435065] | 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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| [6f0841] | 16 | #include "Atom/atom.hpp"
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 | 17 | #include "Atom/AtomSet.hpp"
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| [435065] | 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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| [51cdfd] | 22 | #include "Dynamics/AtomicForceManipulator.hpp"
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| [a9b86d] | 23 | #include "Fragmentation/ForceMatrix.hpp"
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| [255829] | 24 | #include "Helpers/helpers.hpp"
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| [4882d5] | 25 | #include "Helpers/defs.hpp"
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| [435065] | 26 | #include "LinearAlgebra/Vector.hpp"
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| [ab26c3] | 27 | #include "Thermostats/ThermoStatContainer.hpp"
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| [4882d5] | 28 | #include "Thermostats/Thermostat.hpp"
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| [435065] | 29 | #include "World.hpp"
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 | 30 | 
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 | 31 | template <class T>
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| [51cdfd] | 32 | class VerletForceIntegration : public AtomicForceManipulator<T>
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| [435065] | 33 | {
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 | 34 | public:
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| [4882d5] | 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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| [51cdfd] | 42 |     AtomicForceManipulator<T>(_atoms, _Deltat, _IsAngstroem)
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| [435065] | 43 |   {}
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| [4882d5] | 44 |   /** Destructor of class VerletForceIntegration.
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 | 45 |    *
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 | 46 |    */
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| [435065] | 47 |   ~VerletForceIntegration()
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 | 48 |   {}
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 | 49 | 
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| [4882d5] | 50 |   /** Performs Verlet integration.
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| [bcb593] | 51 |    *
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 | 52 |    * We assume that forces have just been calculated. Then, we perform the velocity
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 | 53 |    * and the position calculation for \f$ t + \Delta t \f$, such that forces may be
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 | 54 |    * again calculated with respect to the new position.
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 | 55 |    *
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| [4882d5] | 56 |    * \param NextStep current time step (i.e. \f$ t + \Delta t \f$ in the sense of the velocity verlet)
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 | 57 |    * \param offset offset in matrix file to the first force component
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 | 58 |    * \param DoConstrainedMD whether a constrained MD shall be done
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 | 59 |    * \param FixedCenterOfMass whether forces and velocities are correct to have fixed center of mass
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 | 60 |    * \todo This is not yet checked if it is correctly working with DoConstrainedMD set >0.
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 | 61 |    */
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| [1e45f1f] | 62 |   void operator()(const int NextStep, const size_t offset, const int DoConstrainedMD, const bool FixedCenterOfMass)
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| [4882d5] | 63 |   {
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 | 64 |     Info FunctionInfo(__func__);
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 | 65 | 
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 | 66 |     // make sum of forces equal zero
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 | 67 |     if (FixedCenterOfMass)
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| [51cdfd] | 68 |       AtomicForceManipulator<T>::correctForceMatrixForFixedCenterOfMass(offset,NextStep-1);
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| [4882d5] | 69 | 
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| [435065] | 70 |     // solve a constrained potential if we are meant to
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| [51cdfd] | 71 | //    if (DoConstrainedMD)
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 | 72 | //      performConstraintMinimization(DoConstrainedMD,NextStep-1);
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| [bcb593] | 73 | 
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 | 74 |     if (NextStep > 0) {
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| [51cdfd] | 75 |       for(typename AtomSetMixin<T>::iterator iter = AtomicForceManipulator<T>::atoms.begin();
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 | 76 |           iter != AtomicForceManipulator<T>::atoms.end(); ++iter) {
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| [bcb593] | 77 |         //std::cout << "Id of atom is " << (*iter)->getId() << std::endl;
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| [51cdfd] | 78 |         (*iter)->VelocityVerletUpdateU(
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 | 79 |             (*iter)->getId(),
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 | 80 |             NextStep-1,
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 | 81 |             AtomicForceManipulator<T>::Deltat,
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 | 82 |             AtomicForceManipulator<T>::IsAngstroem);
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| [bcb593] | 83 |       }
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 | 84 | 
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 | 85 |       // make sum of velocities equal zero
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 | 86 |       if (FixedCenterOfMass)
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| [51cdfd] | 87 |         AtomicForceManipulator<T>::correctVelocitiesForFixedCenterOfMass(NextStep-1);
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| [bcb593] | 88 | 
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 | 89 |       // thermostat
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| [51cdfd] | 90 |       AtomicForceManipulator<T>::performThermostatControl(NextStep-1);
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| [435065] | 91 |     }
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 | 92 | 
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 | 93 |     //std::cout << "Force before velocity verlet, " << Force << std::endl;
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 | 94 |     // and perform Verlet integration for each atom with position, velocity and force vector
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 | 95 |     // check size of vectors
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| [51cdfd] | 96 |     for(typename AtomSetMixin<T>::iterator iter = AtomicForceManipulator<T>::atoms.begin();
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 | 97 |         iter != AtomicForceManipulator<T>::atoms.end(); ++iter) {
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| [435065] | 98 |       //std::cout << "Id of atom is " << (*iter)->getId() << std::endl;
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| [51cdfd] | 99 |       (*iter)->VelocityVerletUpdateX(
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 | 100 |           (*iter)->getId(),
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 | 101 |           NextStep,
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 | 102 |           AtomicForceManipulator<T>::Deltat,
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 | 103 |           AtomicForceManipulator<T>::IsAngstroem);
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| [435065] | 104 |     }
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| [4882d5] | 105 |   }
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| [435065] | 106 | };
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 | 107 | 
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 | 108 | #endif /* VERLETFORCEINTEGRATION_HPP_ */
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