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Embedded-atom-method functions for the fcc metals Cu, Ag, Au, Ni, Pd, Pt, and their alloys

Physical review. B, Condensed matter · 1986 · Vol. 33(12) · pp. 7983–7991
Stephen M. FoilesM. I. BaskesMurray S. Daw

Abstract

A consistent set of embedding functions and pair interactions for use with the embedded-atom method [M.S. Daw and M. I. Baskes, Phys. Rev. B 29, 6443 (1984)] have been determined empirically to describe the fcc metals Cu, Ag, Au, Ni, Pd, and Pt as well as alloys containing these metals. The functions are determined empirically by fitting to the sublimation energy, equilibrium lattice constant, elastic constants, and vacancy-formation energies of the pure metals and the heats of solution of the binary alloys. The validity of the functions is tested by computing a wide range of properties: the formation volume and migration energy of vacancies, the formation energy, formation volume, and migration energy of divacancies and self-interstitials, the surface energy and geometries of the low-index surfaces of the pure metals, and the segregation energy of substitutional impurities to (100) surfaces.

Advanced Materials Characterization TechniquesMetal and Thin Film MechanicsAdvanced Chemical Physics StudiesMaterials scienceSublimation (psychology)Vacancy defectAtom (system on chip)Embedded atom modelLattice constantImpurityThermodynamicsCondensed matter physicsChemistry
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