论文标题

结晶材料中的声子水动力学

Phonon hydrodynamics in crystalline materials

论文作者

Ghosh, Kanka, Kusiak, Andrzej, Battaglia, Jean-Luc

论文摘要

声子水动力学是一种异国情调的声子传输现象,它挑战了对晶体固体中扩散声子散射的常规理解。它具有与流体流体动力学相似的各种非常规特性的声子的特殊集体运动,促进了非傅立叶热传输。因此,它开辟了几种新的途径,以丰富有关声子物理,声子工程以及微型和纳米电子设备技术的知识和实现。这篇综述旨在通过实验,分析方法和最新的数值技术来涵盖该领域的全面发展以及该领域的最新进步。使用现象学和材料科学观点,已经实现了该主题的演变。此外,与影响这种特殊运动的因素有关的讨论说明了在各种应用中实现的声子流体动力学的能力。考虑到物理学和材料科学轴,可以从该主题中出现过多的新想法,从而在非金属固体中呼应了声子运输周围的研究领域的前景。

Phonon hydrodynamics is an exotic phonon transport phenomenon that challenges the conventional understanding of diffusive phonon scattering in crystalline solids. It features a peculiar collective motion of phonons with various unconventional properties resembling fluid hydrodynamics, facilitating non Fourier heat transport. Hence, it opens up several new avenues to enrich the knowledge and implementations on phonon physics, phonon engineering, and micro and nanoelectronic device technologies. This review aims at covering a comprehensive development as well as the recent advancements in this field via experiments, analytical methods, and state-of-the-art numerical techniques. The evolution of the topic has been realized using both phenomenological and material science perspectives. Further, the discussions related to the factors that influence such peculiar motion, illustrate the capability of phonon hydrodynamics to be implemented in various applications. A plethora of new ideas can emerge from the topic considering both the physics and the material science axes, navigating towards a promising outlook in the research areas around phonon transport in non-metallic solids.

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