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声子输运中的非谐性、维度和尺寸效应。

Anharmonic, dimensionality and size effects in phonon transport.

作者信息

Thomas Iorwerth O, Srivastava G P

机构信息

School of Physics, University of Exeter, Stocker Road, Exeter EX4 4QL, United Kingdom.

出版信息

J Phys Condens Matter. 2017 Dec 20;29(50):505703. doi: 10.1088/1361-648X/aa995e.

Abstract

We have developed and employed a numerically efficient semi- ab initio theory, based on density-functional and relaxation-time schemes, to examine anharmonic, dimensionality and size effects in phonon transport in three- and two-dimensional solids of different crystal symmetries. Our method uses third- and fourth-order terms in crystal Hamiltonian expressed in terms of a temperature-dependent Grüneisen's constant. All input to numerical calculations are generated from phonon calculations based on the density-functional perturbation theory. It is found that four-phonon processes make important and measurable contribution to lattice thermal resistivity above the Debye temperature. From our numerical results for bulk Si, bulk Ge, bulk MoS and monolayer MoS we find that the sample length dependence of phonon conductivity is significantly stronger in low-dimensional solids.

摘要

我们基于密度泛函和弛豫时间方案,开发并应用了一种数值高效的半从头算理论,以研究具有不同晶体对称性的三维和二维固体中声子输运的非谐性、维度和尺寸效应。我们的方法使用了以温度依赖的格林爱森常数表示的晶体哈密顿量中的三阶和四阶项。数值计算的所有输入均由基于密度泛函微扰理论的声子计算生成。结果发现,在德拜温度以上,四声子过程对晶格热阻有重要且可测量的贡献。从我们对体硅、体锗、体二硫化钼和单层二硫化钼的数值结果来看,我们发现声子电导率对样品长度的依赖性在低维固体中明显更强。

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