English

Thermal diffusivity and its lower bound in orthorhombic SnSe

Materials Science 2021-08-24 v2

Abstract

The orthorhombic monochalcogenide SnSe has attracted much attention in recent years as a promising high-temperature thermoelectric material. We present a study of its thermal conductivity and specific heat of SnSe between 2~K and 300~K and quantify its anisotropic thermal diffusivity, DD. For both crystallographic orientations, thermal diffusivity remains above the recently identified Planckian limit (D>vs2τPD > v_s^2 \tau_P, where vsv_s is the sound velocity and τP=/kBT\tau_P= \hbar/k_BT) and its anisotropy in DD is set by the anisotropy of vsv_s. Comparison with cubic members of the IV-VI family leads to a consistent picture, where the diffusivity in all members of the family is set by the product of vs_s, τP\tau_P and the 'melting' velocity derived from the melting temperature.

Keywords

Cite

@article{arxiv.2104.13994,
  title  = {Thermal diffusivity and its lower bound in orthorhombic SnSe},
  author = {Valentina Martelli and Fabio Abud and Julio Larrea Jiménez and Elisa Baggio-Saitovich and Li-Dong Zhao and Kamran Behnia},
  journal= {arXiv preprint arXiv:2104.13994},
  year   = {2021}
}
R2 v1 2026-06-24T01:36:48.031Z