Three-dimensional valley-contrasting sound

Fuente: arXiv
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Main Authors: Xue, Haoran, Ge, Yong, Cheng, Zheyu, Guan, Yi-jun, Zhu, Jiaojiao, Zou, Hong-yu, Yuan, Shou-qi, Yang, Shengyuan A., Sun, Hong-xiang, Chong, Yidong, Zhang, Baile
Format: Preprint
Published: 2024
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author Xue, Haoran
Ge, Yong
Cheng, Zheyu
Guan, Yi-jun
Zhu, Jiaojiao
Zou, Hong-yu
Yuan, Shou-qi
Yang, Shengyuan A.
Sun, Hong-xiang
Chong, Yidong
Zhang, Baile
author_facet Xue, Haoran
Ge, Yong
Cheng, Zheyu
Guan, Yi-jun
Zhu, Jiaojiao
Zou, Hong-yu
Yuan, Shou-qi
Yang, Shengyuan A.
Sun, Hong-xiang
Chong, Yidong
Zhang, Baile
contents Spin and valley are two fundamental properties of electrons in crystals. The similarity between them is well understood in valley-contrasting physics established decades ago in two-dimensional (2D) materials like graphene--with broken inversion symmetry, the two valleys in graphene exhibit opposite orbital magnetic moments, similar to the spin-1/2 behaviors of electrons, and opposite Berry curvature that leads to a half topological charge. However, valley-contrasting physics has never been explored in 3D crystals. Here, we develop a 3D acoustic crystal exhibiting 3D valley-contrasting physics. Unlike spin that is fundamentally binary, valley in 3D can take six different values, each carrying a vortex in a distinct direction. The topological valley transport is generalized from the edge states of 2D materials to the surface states of 3D materials, with interesting features including robust propagation, topological refraction, and valley-cavity localization. Our results open a new route for wave manipulation in 3D space.
format Preprint
id arxiv_https___arxiv_org_abs_2409_11714
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Three-dimensional valley-contrasting sound
Xue, Haoran
Ge, Yong
Cheng, Zheyu
Guan, Yi-jun
Zhu, Jiaojiao
Zou, Hong-yu
Yuan, Shou-qi
Yang, Shengyuan A.
Sun, Hong-xiang
Chong, Yidong
Zhang, Baile
Mesoscale and Nanoscale Physics
Spin and valley are two fundamental properties of electrons in crystals. The similarity between them is well understood in valley-contrasting physics established decades ago in two-dimensional (2D) materials like graphene--with broken inversion symmetry, the two valleys in graphene exhibit opposite orbital magnetic moments, similar to the spin-1/2 behaviors of electrons, and opposite Berry curvature that leads to a half topological charge. However, valley-contrasting physics has never been explored in 3D crystals. Here, we develop a 3D acoustic crystal exhibiting 3D valley-contrasting physics. Unlike spin that is fundamentally binary, valley in 3D can take six different values, each carrying a vortex in a distinct direction. The topological valley transport is generalized from the edge states of 2D materials to the surface states of 3D materials, with interesting features including robust propagation, topological refraction, and valley-cavity localization. Our results open a new route for wave manipulation in 3D space.
title Three-dimensional valley-contrasting sound
topic Mesoscale and Nanoscale Physics
url https://arxiv.org/abs/2409.11714