In this manual we provide a guide on the practical implementation and reproduction of the results presented in our publication entitled: "Exploring Phononic Properties of Two-Dimensional Materials using Machine Learning Interatomic Potentials". We specifically discuss the repository https://gitlab.com/ivannovikov/mlip_phonopy with the MLIP_PHONOPY code—a C++ interface between the MLIP code and the PHONOPY software—which allows one to calculate phonon spectra, group velocities, thermal properties, etc., of a two-dimensional material. Along with the repository description, this manual contains an instruction on quick installation of the stable branch of the MLIP code, a description of VASP input files for ab initio molecular dynamics (AIMD) c...
Abstract This investigation presents a generally applicable framework for parameterizing interatomic...
Phonon (lattice/atoms vibrations) and dielectric properties of 1296 compounds computed via ABINIT so...
Molecular simulations allow to investigate the behaviour of materials at the atomistic level, sheddi...
Phononic properties are commonly studied by calculating force constants using the density functional...
Molecular dynamics (MD) simulations calculate the trajectory of atoms as a function of time. Materia...
Machine learning of the quantitative relationship between local environment descriptors and the pote...
Understanding materials dynamics under extreme conditions of pressure, temperature, and strain rate ...
Machine learning interatomic potentials (MLIPs) are routinely used atomic simulations, but generatin...
Thesis (Ph.D.)--University of Washington, 2015Phonons, the quantization of atomic vibrations, are im...
AbstractPhonon plays essential roles in dynamical behaviors and thermal properties, which are centra...
© 2020 The Authors Molecular dynamics (MD) is a powerful technique that can be used to study thermal...
Machine learning interatomic potentials (ML-IPs) have emerged as a promising approach for bridging t...
Data for manuscript entitled: First-Principles Multiscale Modeling of Mechanical Properties in Graph...
In recent years Phonopy[1] has become a very well known software in the materials science field for...
This thesis deals with discussions on the motivation and approach for discovering new interatomic po...
Abstract This investigation presents a generally applicable framework for parameterizing interatomic...
Phonon (lattice/atoms vibrations) and dielectric properties of 1296 compounds computed via ABINIT so...
Molecular simulations allow to investigate the behaviour of materials at the atomistic level, sheddi...
Phononic properties are commonly studied by calculating force constants using the density functional...
Molecular dynamics (MD) simulations calculate the trajectory of atoms as a function of time. Materia...
Machine learning of the quantitative relationship between local environment descriptors and the pote...
Understanding materials dynamics under extreme conditions of pressure, temperature, and strain rate ...
Machine learning interatomic potentials (MLIPs) are routinely used atomic simulations, but generatin...
Thesis (Ph.D.)--University of Washington, 2015Phonons, the quantization of atomic vibrations, are im...
AbstractPhonon plays essential roles in dynamical behaviors and thermal properties, which are centra...
© 2020 The Authors Molecular dynamics (MD) is a powerful technique that can be used to study thermal...
Machine learning interatomic potentials (ML-IPs) have emerged as a promising approach for bridging t...
Data for manuscript entitled: First-Principles Multiscale Modeling of Mechanical Properties in Graph...
In recent years Phonopy[1] has become a very well known software in the materials science field for...
This thesis deals with discussions on the motivation and approach for discovering new interatomic po...
Abstract This investigation presents a generally applicable framework for parameterizing interatomic...
Phonon (lattice/atoms vibrations) and dielectric properties of 1296 compounds computed via ABINIT so...
Molecular simulations allow to investigate the behaviour of materials at the atomistic level, sheddi...