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Atomistic study of structural correlations at a liquid–solid interface
Authors:Adham Hashibon  Joan Adler  Michael W Finnis  Wayne D Kaplan
Affiliation:

a Department of Physics, Technion, Haifa 32000, Israel

b Atomistic Simulation Group, School of Mathematics and Physics, The Queen's University of Belfast, Belfast BT7 1NN, Ireland

c Department of Materials Engineering, Technion, Haifa 32000, Israel

Abstract:Structural correlations at a liquid–solid interface were explored with molecular dynamics simulations of a model aluminium system using the Ercolessi–Adams potential and up to 4320 atoms. Substrate atoms were pinned to their equilibrium crystalline positions while liquid atoms were free to move. The density profile at the interface was investigated for different substrate crystallographic orientations and temperatures. An exponential decay of the density profile was observed, ρ(z)not, vert, similarez, leading to the definition of κ as a quantitative measure of the ordering at the liquid solid interface. A direct correlation between the amount of ordering in the liquid phase and the underlying substrate orientation was found.
Keywords:Solid–liquid interfaces  Computer simulation  Aluminium  Layering
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