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A critical assessment of interatomic potentials for modelling lattice defects in forsterite Mg$$_2$$SiO$$_4$$ from 0 to 12 GPa

Pierre Hirel; Jean Furstoss; Philippe Carrez
Physics and Chemistry of Minerals · Vol. 48, Issue 12 · 2021

Abstract

Five different interatomic potentials designed for modelling forsterite Mg $$_2$$ 2 SiO $$_4$$ 4 are compared to ab initio and experimental data. The set of tested properties include lattice constants, material density, elastic wave velocity, elastic stiffness tensor, free surface energies, generalized stacking faults, neutral Frenkel and Schottky defects, in the pressure range $$0-12$$ 0 - 12 GPa relevant to the Earth’s upper mantle. We conclude that all interatomic potentials are reliable and applicable to the study of point defects. Stacking faults are correctly described by the THB1 potential, and qualitatively by the Pedone2006 potential. Other rigid-ion potentials give a poor account of stacking fault energies, and should not be used to model planar defects or dislocations. These results constitute a database on the transferability of rigid-ion potentials, and provide strong physical ground for simulating diffusion, dislocations, or grain boundaries.

Bibliographic Information

JournalPhysics and Chemistry of Minerals
PublisherSpringer
Publication Date2021-12-01
Publication Year2021
Volume48
Issue12
Document TypeJournal Article
Print ISSN0342-1791
eISSN1432-2021
DOI10.1007/s00269-021-01170-6

Access Information

NARA Access Coverage1977-01-01~Current
Journal Homepagehttps://www.springer.com/journal/269
Publisher PageOpen Publisher Page
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