Implications of phonon anisotropy on thermal conductivity of fluorite oxides

Author:

Adnan SaqeebORCID,Jin MiaomiaoORCID,Bryan Matthew S,Manley Michael EORCID,Hurley David H,Khafizov MaratORCID

Abstract

Abstract Fluorite oxides are attractive ionic compounds for a range of applications with critical thermal management requirements. In view of recent reports alluding to anisotropic thermal conductivity in this face-centered cubic crystalline systems, we perform a detailed analysis of the impact of direction-dependent phonon group velocities and lifetimes on the thermal transport of fluorite oxides. We demonstrate that the bulk thermal conductivity of this class of materials remains isotropic despite notable anisotropy in phonon lifetime and group velocity. However, breaking the symmetry of the phonon lifetime under external stimuli including boundary scattering present in nonequilibrium molecular dynamics simulations of finite size simulation cell gives rise to apparent thermal conductivity anisotropy. We observe that for accurate determination of thermal conductivity, it is important to consider phonon properties not only along high symmetry directions commonly measured in inelastic neutron or x-ray scattering experiments but also of those along lower symmetry. Our results suggests that certain low symmetry directions have a larger contribution to thermal conductivity compared to high symmetry ones.

Funder

Office of Nuclear Energy of the U.S. Department of Energy and the Nuclear Science

U.S. Department of Energy

Center for Thermal Energy Transport under Irradiation

Publisher

IOP Publishing

Subject

Condensed Matter Physics,General Materials Science

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