Ejemplo n.º 1
0
    def get_forces(self, cell_with_disp):
        """
        Calculate the forces of a supercell using tinker
        :param cell_with_disp: supercell (PhonopyAtoms) from which determine the forces
        :return array: numpy array matrix with forces of atoms [Natoms x 3]
        """

        import tempfile
        import subprocess
        import os
        from subprocess import PIPE

        temp_file_name = tempfile.gettempdir() + '/tinker_temp' + '_' + str(
            os.getpid())

        # temp_file_name = 'test_calc'

        supercell_wd = rebuild_connectivity_tinker(self._structure,
                                                   cell_with_disp,
                                                   self._supercell_matrix)

        tinker_input_file = open(temp_file_name + '.txyz', mode='w')
        tinker_input_file.write(generate_tinker_txyz_file(supercell_wd))

        tinker_key_file = open(temp_file_name + '.key', mode='w')
        tinker_key_file.write(generate_tinker_key_file(supercell_wd))

        tinker_input_file.close()
        tinker_key_file.close()

        tinker_command = './testgrad ' + tinker_input_file.name + \
                         ' ' + self.force_field + ' Y N N ' + ' -k ' + tinker_key_file.name

        tinker_process = subprocess.Popen(tinker_command,
                                          stdin=PIPE,
                                          stderr=PIPE,
                                          stdout=PIPE,
                                          shell=True)
        (output, err) = tinker_process.communicate()
        tinker_process.wait()

        if len(err.split()) != 0:
            print(err)
            print('Something wrong in forces calculation!')
            exit()

        # print(output)
        os.unlink(tinker_input_file.name)
        os.unlink(tinker_key_file.name)

        forces = parse_tinker_forces(output) * unit_factors[self.units]

        return forces
Ejemplo n.º 2
0
    phonon = get_phonon(structure,
                        setup_forces=False,
                        super_cell_phonon=[[2, 0, 0], [0, 2, 0], [0, 0, 2]],
                        NAC=False,
                        symmetrize=True)


    phonon.get_displacement_dataset()
    phonon.generate_displacements(distance=0.0001)
    cells_with_disp = phonon.get_supercells_with_displacements()
    print(cells_with_disp[0])
    print(generate_VASP_structure(cells_with_disp[0]))

    supercell_wd = rebuild_connectivity_tinker(structure,
                                               cells_with_disp[0],
                                               phonon.get_supercell_matrix())

    print(generate_tinker_txyz_file(supercell_wd))
    print(generate_tinker_key_file(supercell_wd))

    print(generate_VASP_structure(structure))

    import tempfile
    import subprocess
    import os
    from subprocess import PIPE

    force_field = 'mm3'
    temp_file_name = tempfile.gettempdir() + '/tinker_temp'+ '_' + str(os.getpid())