English

General Microscopic Model of Magnetoelastic Coupling from First-Principles

Materials Science 2015-06-24 v1

Abstract

Magnetoelastic coupling, i.e., the change of crystal lattice induced by a spin order, is not only scientifically interesting, but also technically important. In this work, we propose a general microscopic model from first-principles calculations to describe the magnetoelastic coupling and provide a way to construct the microscopic model from density functional theory calculations. Based on this model, we reveal that there exists a previously unexpected contribution to the electric polarization induced by the spin-order in multiferroics due to the combined effects of magnetoelastic coupling and piezoelectric effect. Interestingly and surprisingly, we find that this lattice deformation contribution to the polarization is even larger than that from the pure electronic and ion-displacement contributions in BiFeO3. This model of magnetoelastic coupling can be generally applied to investigate the other magnetoelastic phenomena.

Keywords

Cite

@article{arxiv.1503.03565,
  title  = {General Microscopic Model of Magnetoelastic Coupling from First-Principles},
  author = {X. Z. Lu and Xifan Wu and H. J. Xiang},
  journal= {arXiv preprint arXiv:1503.03565},
  year   = {2015}
}

Comments

accepted for publication in Phys. Rev. B as Rapid Communication

R2 v1 2026-06-22T08:50:45.273Z