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电场依赖的声子谱与铁电体的热传导。

Electric field-dependent phonon spectrum and heat conduction in ferroelectrics.

机构信息

Department of Materials Science and Engineering, The Ohio State University, Columbus, OH 43210, USA.

National Institute for Materials Science, Tsukuba 305-0047, Japan.

出版信息

Sci Adv. 2023 Feb 3;9(5):eadd7194. doi: 10.1126/sciadv.add7194. Epub 2023 Feb 1.

Abstract

This article shows experimentally that an external electric field affects the velocity of the longitudinal acoustic phonons (), thermal conductivity (κ), and diffusivity () in a bulk lead zirconium titanate-based ferroelectric. Phonon conduction dominates κ, and the observations are due to changes in the phonon dispersion, not in the phonon scattering. This gives insight into the nature of the thermal fluctuations in ferroelectrics, namely, phonons labeled ferrons that carry heat and polarization. It also opens the way for phonon-based electrically driven all-solid-state heat switches, an enabling technology for solid-state heat engines. A quantitative theoretical model combining piezoelectric strain and phonon anharmonicity explains the field dependence of , κ, and without any adjustable parameters, thus connecting thermodynamic equilibrium properties with transport properties. The effect is four times larger than previously reported effects, which were ascribed to field-dependent scattering of phonons.

摘要

本文从实验上表明,外电场会影响块状锆钛酸铅基铁电体中纵声学声子()的速度、热导率(κ)和扩散率()。声子传导主导 κ,这些观察结果归因于声子色散的变化,而不是声子散射的变化。这为铁电体中热涨落的本质提供了深入了解,即携带热和极化的声子被标记为 ferrons。这也为基于声子的电驱动全固态热开关开辟了道路,这是固态热机的一项使能技术。一个结合了压电应变和声子非谐性的定量理论模型解释了没有任何可调参数的、与热力学平衡性质与输运性质相关的、、对电场的依赖关系。该效应比之前报道的归因于声子的电场相关散射的效应大四倍。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7899/9891688/f7a47ca66475/sciadv.add7194-f1.jpg

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