Phonon hydrodynamics in crystalline materials

Author:

Ghosh KankaORCID,Kusiak AndrzejORCID,Battaglia Jean-LucORCID

Abstract

Abstract 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 toward a promising outlook in the research areas around phonon transport in non-metallic solids.

Funder

Horizon 2020 Framework Programme

Publisher

IOP Publishing

Subject

Condensed Matter Physics,General Materials Science

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1. Nonlocal phonon thermal transport in graphene in hydrodynamic regime;Journal of Physics: Condensed Matter;2023-12-14

2. Significant four-phonon scattering and its heat transfer implications in crystalline Ge2Sb2Te5;Physical Review B;2023-12-14

3. Thermal conductivity of group IV elemental semiconductors;Journal of Applied Physics;2023-12-11

4. Hydrodynamic heat transfer in solids;International Journal of Heat and Mass Transfer;2023-11

5. Ab initio study of collective eigenmodes in dynamics of molten salts;Journal of Molecular Liquids;2023-10

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