Molecular dynamics simulations of energy flow at a solid surface. New methods using a small number of atoms
- 15 January 1989
- journal article
- conference paper
- Published by AIP Publishing in The Journal of Chemical Physics
- Vol. 90 (2) , 1229-1236
- https://doi.org/10.1063/1.456128
Abstract
We present a number of new methods for the treatment of the dynamics of a strongly perturbed, finite sized, anharmonic system embedded in a structured, infinite system. All of the methods divide the full system in three classes of particles: Those that are treated by molecular dynamics; those that obey some form of stochastic molecular dynamics; and, those that are fixed. The methods are all simpler than the well-known generalized Langevin equation technique, and can be applied easily to much more complex processes than is possible for the GLE. A detailed illustration is provided of the energy flow through a solid lattice following a sudden disturbance of one surface atom. We compare the different methods and establish the size of the region of moving atoms needed to describe the lattice response over various time scales for the different dynamical methods.Keywords
This publication has 12 references indexed in Scilit:
- A velocity reset method of simulating thermal motion and damping in gas–solid collisionsThe Journal of Chemical Physics, 1988
- Stochastic trajectory studies of small argon cluster scattering from Pt(111)The Journal of Chemical Physics, 1988
- Molecular Dynamics of Biomolecules: Overview and ApplicationsIsrael Journal of Chemistry, 1986
- Recent Advances in Moleculardynamics Computer SimulationPublished by Wiley ,1985
- Memory function parametrization in the GLE-Ghost atom formalism: A microscopic approachSurface Science, 1984
- Theoretical studies of surface diffusion: Self-diffusion in the fcc (111) systemThe Journal of Chemical Physics, 1982
- Dynamics of gas–surface interactions: 3D generalized Langevin model applied to fcc and bcc surfacesThe Journal of Chemical Physics, 1980
- Brownian motion and chemical dynamics on solid surfacesAccounts of Chemical Research, 1977
- Calculation of potential energy parameters form crystalline state propertiesPhysica Status Solidi (a), 1975
- Computer "Experiments" on Classical Fluids. I. Thermodynamical Properties of Lennard-Jones MoleculesPhysical Review B, 1967