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声子崩塌与 SnSe 热电材料中的二级相变

Phonon Collapse and Second-Order Phase Transition in Thermoelectric SnSe.

机构信息

Centro de Física de Materiales CFM, CSIC-UPV/EHU, Paseo Manuel de Lardizabal 5, 20018 Donostia, Basque Country, Spain.

Donostia International Physics Center (DIPC), Manuel Lardizabal pasealekua 4, 20018 Donostia, Basque Country, Spain.

出版信息

Phys Rev Lett. 2019 Feb 22;122(7):075901. doi: 10.1103/PhysRevLett.122.075901.

Abstract

Since 2014 the layered semiconductor SnSe in the high-temperature Cmcm phase is known to be the most efficient intrinsic thermoelectric material. Making use of first-principles calculations we show that its vibrational and thermal transport properties are determined by huge nonperturbative anharmonic effects. We show that the transition from the Cmcm phase to the low-symmetry Pnma is a second-order phase transition driven by the collapse of a zone border phonon, whose frequency vanishes at the transition temperature. Our calculations show that the spectral function of the in-plane vibrational modes are strongly anomalous with shoulders and double-peak structures. We calculate the lattice thermal conductivity obtaining good agreement with experiments only when nonperturbative anharmonic scattering is included. Our results suggest that the good thermoelectric efficiency of SnSe is strongly affected by the nonperturbative anharmonicity.

摘要

自 2014 年以来,高温 Cmcm 相的层状半导体 SnSe 被认为是最有效的本征热电材料。利用第一性原理计算,我们表明其振动和热输运性质由巨大的非微扰非谐效应决定。我们表明,从 Cmcm 相到低对称 Pnma 相的转变是由一个边界声子的崩溃引起的二级相变,其频率在相变温度下消失。我们的计算表明,面内振动模式的谱函数具有很强的异常性,具有肩峰和双峰结构。我们计算晶格热导率,仅当包括非微扰非谐散射时,才能与实验很好地吻合。我们的结果表明,SnSe 的良好热电效率受到非微扰非谐性的强烈影响。

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