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Comparison of Phase Field Crystal and Molecular Dynamics Simulations for a Shrinking Grain...

by Balasubram Radhakrishnan, Sarma B Gorti, Donald M Nicholson
Publication Type
Conference Paper
Journal Name
Journal of Physics: Conference Series
Publication Date
Volume
402
Conference Name
Conference on Computational Physics
Conference Location
Gatlinburg, Tennessee, United States of America
Conference Sponsor
ORNL, IUPAP, APS Division of Computational Physics
Conference Date
-

The Phase-Field Crystal (PFC) model represents the atomic density as a continuous function, whose spatial distribution evolves at diffusional, rather than vibrational time scales. PFC provides a tool to study defect interactions at the atomistic level but over longer time scales than in molecular dynamics (MD). We examine the behavior of the PFC model with the goal of relating the PFC parameters to physical parameters of real systems, derived from MD simulations. For this purpose we model the phenomenon of the shrinking of a spherical grain situated in a matrix. By comparing the rate of shrinking of the central grain using MD and PFC we obtain a relationship between PFC and MD time scales for processes driven by grain boundary diffusion. The morphological changes in the central grain including grain shape and grain rotation are also examined in order to assess the accuracy of the PFC in capturing the evolution path predicted by MD.