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Phase-field-crystal model for ordered crystals
Journal article

Phase-field-crystal model for ordered crystals

Abstract

We describe a general method to model multicomponent ordered crystals using the phase-field-crystal (PFC) formalism. As a test case, a generic B2 compound is investigated. We are able to produce a line of either first-order or second-order order-disorder phase transitions, features that have not been incorporated in existing PFC approaches. Further, it is found that the only elastic constant for B2 that depends on ordering is C_{11}. This B2 model is then used to study antiphase boundaries (APBs). The APBs are shown to reproduce classical mean-field results. Dynamical simulations of ordering across small-angle grain boundaries predict that dislocation cores pin the evolution of APBs.

Authors

Alster E; Elder KR; Hoyt JJ; Voorhees PW

Journal

Physical Review E, Vol. 95, No. 2,

Publisher

American Physical Society (APS)

Publication Date

February 6, 2017

DOI

10.1103/physreve.95.022105

ISSN

2470-0045

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