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
Department of Physics, The Chinese University of Hong Kong, Shatin, Hong Kong SAR, China.
Research Center of Fluid Machinery Engineering and Technology, School of Physics and Electronic Engineering, Jiangsu University, Zhenjiang 212013, China.
Sci Adv. 2024 Sep 13;10(37):eadp0377. doi: 10.1126/sciadv.adp0377. Epub 2024 Sep 11.
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.
自旋和能谷是晶体中电子的两个基本属性。几十年前在二维(2D)材料(如石墨烯)中建立的能谷对比物理学中,它们之间的相似性已得到充分理解——由于反演对称性破缺,石墨烯中的两个能谷表现出相反的轨道磁矩,类似于电子的自旋1/2行为,以及导致半拓扑电荷的相反贝里曲率。然而,能谷对比物理学从未在三维晶体中得到探索。在此,我们开发了一种展现三维能谷对比物理学的三维声学晶体。与本质上为二元的自旋不同,三维中的能谷可以取六个不同的值,每个值在不同方向携带一个涡旋。拓扑能谷输运从二维材料的边缘态推广到三维材料的表面态,具有稳健传播、拓扑折射和能谷腔局域化等有趣特性。我们的结果为三维空间中的波操控开辟了一条新途径。