Lattice dynamics of anharmonic solids from first principles

ORAL

Abstract

An accurate and easily extendable method to deal with lattice dynamics of solids is offered. It is based on first-principles molecular dynamics simulations and provides a consistent way to extract the best possible harmonic--or higher order--potential energy surface at finite temperatures. It is designed to work even for strongly anharmonic systems where the traditional quasiharmonic approximation fails. The accuracy and convergence of the method are controlled in a straightforward way. Excellent agreement of the calculated phonon dispersion relations at finite temperature with experimental results for bcc Li and bcc Zr is demonstrated. In addition to that the bcc-hcp phase diagram for Zr is calculated with high accuracy. arXiv:1103.5590v3 [cond-mat.mtrl-sci]

Authors

  • Olle Hellman

    IFM, Link\"oping University, Sweden

  • Igor Abrikosov

    Linkoping University, Linkoping, Sweden, IFM, Link\"oping University, IFM, Link\"oping University, Sweden

  • Simak Sergei

    Linkoping University, Linkoping, Sweden, IFM, Link\"oping University, Sweden