Obtaining a good atomistic description of diffusion dynamics in materials has been a daunting task owing to the time-scale limitations of the molecular dynamics method. We discuss promising new methods, derived from transition state theory, for accelerating molecular dynamics simulations of these infrequent-event processes. These methods, hyperdynamics, parallel replica dynamics, temperature-accelerated dynamics, and on-the-fly kinetic Monte Carlo, can reach simulation times several orders of magnitude longer than direct molecular dynamics while retaining full atomistic detail. Most applications so far have involved surface diffusion and growth, but it is clear that these methods can address a wide range of materials problems.

Voter, A., Montalenti, F., Germann, T. (2002). Extending the time scale in atomistic simulation of materials. ANNUAL REVIEW OF MATERIALS RESEARCH, 32, 321-346 [10.1146/annurev.matsci.32.112601.141541].

Extending the time scale in atomistic simulation of materials

MONTALENTI, FRANCESCO CIMBRO MATTIA;
2002

Abstract

Obtaining a good atomistic description of diffusion dynamics in materials has been a daunting task owing to the time-scale limitations of the molecular dynamics method. We discuss promising new methods, derived from transition state theory, for accelerating molecular dynamics simulations of these infrequent-event processes. These methods, hyperdynamics, parallel replica dynamics, temperature-accelerated dynamics, and on-the-fly kinetic Monte Carlo, can reach simulation times several orders of magnitude longer than direct molecular dynamics while retaining full atomistic detail. Most applications so far have involved surface diffusion and growth, but it is clear that these methods can address a wide range of materials problems.
Articolo in rivista - Articolo scientifico
Transition-State Theory; Accelerated Molecular-Dynamics; Surface Self-Diffusion; Monte-Carlo Simulations; Finding Saddle-Points; Minimum Energy Paths; Elastic Band Method; Infrequent Events; Crystal-Growth; Isomerization Dunamics
English
2002
32
321
346
none
Voter, A., Montalenti, F., Germann, T. (2002). Extending the time scale in atomistic simulation of materials. ANNUAL REVIEW OF MATERIALS RESEARCH, 32, 321-346 [10.1146/annurev.matsci.32.112601.141541].
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/10281/35978
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