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近铁电绝缘体中的增强热霍尔效应。

Enhanced Thermal Hall Effect in Nearly Ferroelectric Insulators.

作者信息

Chen Jing-Yuan, Kivelson Steven A, Sun Xiao-Qi

机构信息

Stanford Institute for Theoretical Physics, Stanford University, Stanford, California 94305, USA.

Department of Physics, Stanford University, Stanford, California 94305, USA.

出版信息

Phys Rev Lett. 2020 Apr 24;124(16):167601. doi: 10.1103/PhysRevLett.124.167601.

Abstract

In the context of recent experimental observations of an unexpectedly large thermal Hall conductivity, κ_{H}, in insulating La_{2}CuO_{4} (LCO) and SrTiO_{3} (STO), we theoretically explore conditions under which acoustic phonons can give rise to such a large κ_{H}. Both the intrinsic and extrinsic contributions to κ_{H} are large in proportion to the dielectric constant, ε, and the "flexoelectric" coupling, F. While the intrinsic contribution is still orders of magnitude smaller than the observed effect, an extrinsic contribution proportional to the phonon mean-free path appears likely to account for the observations, at least in STO. We predict a larger intrinsic κ_{H} in certain insulating perovskites.

摘要

在最近对绝缘的La₂CuO₄(LCO)和SrTiO₃(STO)中意外出现的大的热霍尔电导率κₕ进行实验观测的背景下,我们从理论上探索了声学声子能够产生如此大的κₕ的条件。对κₕ的本征和非本征贡献都与介电常数ε和“挠曲电”耦合F成比例地大。虽然本征贡献仍比观测到的效应小几个数量级,但与声子平均自由程成比例的非本征贡献似乎有可能解释这些观测结果,至少在STO中是这样。我们预测在某些绝缘钙钛矿中会有更大的本征κₕ。

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