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Matryoshka phonon twinning in α-GaN

Engineering and Technology

Matryoshka phonon twinning in α-GaN

B. Wei, Q. Cai, et al.

This groundbreaking research delves into the phonon dynamics of α-GaN, a key material for third-generation power semiconductors, revealing a Matryoshka phonon dispersion that drives thermal conductivity anisotropy. Conducted by experts including Bin Wei and Ayman H. Said, it uncovers crucial insights for thermal management in electronics.... show more
Abstract
Understanding lattice dynamics is crucial for effective thermal management in electronic devices because phonons dominate thermal transport in most semiconductors. α-GaN has become a focus of interest as one of the most important third-generation power semiconductors, however, the knowledge on its phonon dynamics remains limited. Here we show a Matryoshka phonon dispersion of α-GaN with the complementary inelastic X-ray and neutron scattering techniques and the first-principles calculations. Such Matryoshka twinning throughout the basal plane of the reciprocal space is demonstrated to amplify the anharmonicity of the related phonons through creating abundant three-phonon scattering channels and cutting the lifetime of affected modes by more than 50%. Such phonon topology contributes to reducing the in-plane thermal transport, thus the anisotropic thermal conductivity of α-GaN. The results not only have implications for engineering the thermal performance of α-GaN, but also offer valuable insights on the role of anomalous phonon topology in thermal transport of other technically semiconductors.
Publisher
Communications Physics
Published On
Oct 12, 2021
Authors
Bin Wei, Qingan Cai, Qiyang Sun, Yaokun Su, Ayman H. Said, Douglas L. Abernathy, Jiawang Hong, Chen Li
Tags
lattice dynamics
phonon dynamics
α-GaN
thermal conductivity
anharmonicity
thermal management
semiconductors
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