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合成外尔声子晶体中表面弧的铰链模式

Hinge Modes of Surface Arcs in a Synthetic Weyl Phononic Crystal.

作者信息

Ye Liping, Wang Qing, Fu Zhonghao, He Hailong, Huang Xueqin, Ke Manzhu, Lu Jiuyang, Deng Weiyin, Liu Zhengyou

机构信息

Key Laboratory of Artificial Micro- and Nanostructures of Ministry of Education and School of Physics and Technology, <a href="https://ror.org/033vjfk17">Wuhan University</a>, Wuhan 430072, China.

School of Physics and Optoelectronics, <a href="https://ror.org/0530pts50">South China University of Technology</a>, Guangzhou 510640, China.

出版信息

Phys Rev Lett. 2024 Sep 20;133(12):126602. doi: 10.1103/PhysRevLett.133.126602.

Abstract

Chiral bulk Landau levels and surface arcs, as the two distinctive features unique to Weyl semimetals, have each attracted enormous interest. Recent works have revealed that surface-arc modes can support one-sided chiral hinge modes, a hallmark of the three-dimensional quantum Hall effect, as a combined result of chiral Landau levels of bulk states and magnetic response of surface arcs. Here, we exploit a two-dimensional phononic crystal to construct an ideal Weyl semimetal under a pseudomagnetic field, in which a structural parameter is combined to construct a synthetic three-dimensional space. By directly measuring the acoustic pressure fields, we have not only visualized the one-sided chiral hinge modes, but also observed the quantized Landau level modes. The results pave the way to explore the high-dimensional quantum Hall physics in low-dimensional phononic platforms.

摘要

手性体态朗道能级和表面弧,作为外尔半金属独有的两个显著特征,各自都引起了极大的关注。最近的研究表明,表面弧模式能够支持单侧手性棱边模式,这是三维量子霍尔效应的一个标志,它是体态的手性朗道能级和表面弧的磁响应共同作用的结果。在此,我们利用二维声子晶体在赝磁场下构建了一种理想的外尔半金属,其中一个结构参数被组合起来构建了一个合成三维空间。通过直接测量声压场,我们不仅可视化了单侧手性棱边模式,还观测到了量子化的朗道能级模式。这些结果为在低维声子平台中探索高维量子霍尔物理铺平了道路。

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