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Revisiting lattice thermal transport in PbTe: The crucial role of quartic anharmonicity

机译:回顾PbTe中的晶格热传输:四次非谐性的关键作用

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摘要

We perform a first-principles study of lattice thermal transport in PbTe by explicitly considering anharmonicity up to 4th order. To determine the temperature-dependent lattice constant of PbTe beyond quasiharmonic approximation, we introduce a simple yet effective scheme to account for anharmonic phonon renormalization at finite temperature. Moreover, we explicitly compute moderesolved phonon lifetimes by including both three- and four-phonon scatterings. We find that (1) anharmonic phonon renormalization leads to strong vibrational frequency shifts which improve the agreement between simulated and experimental lattice constants; (2) these frequency shifts lead to a significant increase in lattice thermal conductivity (kappa(l)) because of reduced phonon scattering phase space; and (3) four-phonon scatterings are responsible for severe reduction in kappa(l) on top of three-phonon scatterings, making kappa(l) consistent with experiments. Our results suggest that the predicted kappa(l) and its temperature dependence without considering thermal expansion, anharmonic phonon renormalization and four-phonon scatterings could accidentally agree with experiments due to error cancellation. Our study not only deepens the understanding of lattice thermal transport in PbTe but also exemplifies a widely applicable approach to investigate lattice dynamics and thermal transport properties from first-principles calculations including high-order anharmonicity. Published by AIP Publishing.
机译:我们通过明确考虑高达4阶的非谐性,对PbTe中的晶格热传输进行了第一性原理研究。为了确定准谐波近似以外的PbTe的温度相关晶格常数,我们引入了一个简单而有效的方案来说明有限温度下的非谐声子重正态化。此外,我们通过包括三和四声子散射来显式计算模式分辨的声子寿命。我们发现(1)非谐声子重归一化导致强烈的振动频移,从而改善了模拟和实验晶格常数之间的一致性; (2)由于声子散射相空间的减小,这些频移导致晶格热导率(kappa(l))的显着增加; (3)四声子散射导致三声子散射基础上kappa(l)的严重减少,这使得kappa(l)与实验一致。我们的结果表明,由于误差消除,预测的kappa(l)及其温度依赖性而未考虑热膨胀,非谐声子重归一化和四声子散射可能会意外地与实验一致。我们的研究不仅加深了对PbTe中晶格热传输的理解,而且还举例说明了一种广泛适用的方法,可以从包括高阶非谐波在内的第一性原理计算中研究晶格动力学和热传输特性。由AIP Publishing发布。

著录项

  • 来源
    《Applied Physics Letters》 |2018年第7期|073901.1-073901.5|共5页
  • 作者

    Xia Yi;

  • 作者单位
  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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