Dynamical matrices, Born effective charges, dielectric permittivity tensors, and interatomic force constants from density-functional perturbation theory

Xavier Gonze and Changyol Lee
Phys. Rev. B 55, 10355 – Published 15 April 1997
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Abstract

Starting from the knowledge of first-order changes of wave functions and density with respect to small atomic displacements or infinitesimal homogeneous electric fields within the density-functional theory, we write the expressions for the diagonal or mixed second-order derivatives of the total energy with respect to these perturbations: dynamical matrices for different wave vectors, Born effective-charge tensors and electronic dielectric permittivity tensors. Interatomic force constants and the phonon-band structure are then obtained by computing the Fourier transform of dynamical matrices on a regular mesh of wave vectors, with an eventual, separate treatment of the long-range dipole-dipole interaction. The same ingredients also allow one to compute the low-frequency response of the crystal to homogeneous electric fields.

    DOI:https://doi.org/10.1103/PhysRevB.55.10355

    ©1997 American Physical Society

    Authors & Affiliations

    Xavier Gonze

    • Unitéde Physico-Chimie et de Physique des Matériaux, UniversitéCatholique de Louvain, B-1348 Louvain-la-Neuve, Belgium

    Changyol Lee

    • Department of Physics, Ewha Womans University, Seoul, 120-750, South Korea

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    Issue

    Vol. 55, Iss. 16 — 15 April 1997

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