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Phonon and heat transport control using pillar-based phononic crystals

机译:基于支柱的声子晶体的声子和热传输控制

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Phononic crystals have been studied for the past decades as a tool to control the propagation of acoustic and mechanical waves. Recently, researchers proposed that nanosized phononic crystals can also control heat conduction and improve the thermoelectric efficiency of silicon by phonon dispersion engineering. In this review, we focus on recent theoretical and experimental advances in phonon and thermal transport engineering using pillar-based phononic crystals. First, we explain the principles of the phonon dispersion engineering and summarize early proof-of-concept experiments. Next, we review recent simulations of thermal transport in pillar-based phononic crystals and seek to uncover the origin of the observed reduction in the thermal conductivity. Finally, we discuss first experimental attempts to observe the predicted thermal conductivity reduction and suggest the directions for future research.
机译:过去几十年来研究了帖子晶体作为控制声波传播的工具。最近,研究人员提出,纳米化声子晶体还可以控制热传导,提高声子分散工程的硅的热电效率。在这篇综述中,我们专注于使用基于支柱的声子晶体的声子和热传输工程的最近理论和实验性研究。首先,我们解释了声子分散工程的原则,并总结了早期概念证明实验。接下来,我们审查最近在基于支柱的声子晶体中的热传输模拟,并寻求揭示观察到的导热率的降低的来源。最后,我们讨论了遵守预测的导热率降低的首次实验尝试,并提出了未来研究的方向。

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