Anisotropic Thermal Conductivity of a Si/Ge Quantum Dot Superlattice

T. Borca-Tasciuc, Weili Liu, Jianlin Liu, Kang L. Wang, Gang Chen
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Abstract

In this work, we present experimental results on the in-plane and cross-plane thermal conductivity characterization of a Si/Ge quantum-dots superlattice structure. The quantum-dots superlattice was grown by molecular-beam-epitaxy and self-organization. The anisotropic thermal conductivity measurements are performed by a differential two-wire 3ω method. The measured in-plane and cross-plane thermal conductivity values show a different temperature behavior. The results are compared and explained with heat transport models in superlattices.
Si/Ge量子点超晶格的各向异性热导率
在这项工作中,我们提出了Si/Ge量子点超晶格结构的平面内和平面间导热特性的实验结果。采用分子束外延和自组织法制备了量子点超晶格。各向异性导热系数的测量是通过差分双线3ω方法进行的。测得的平面内和平面间导热系数值表现出不同的温度行为。结果与超晶格中的热输运模型进行了比较和解释。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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