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双层声子晶体中的谷拓扑相

Valley Topological Phases in Bilayer Sonic Crystals.

作者信息

Lu Jiuyang, Qiu Chunyin, Deng Weiyin, Huang Xueqin, Li Feng, Zhang Fan, Chen Shuqi, Liu Zhengyou

机构信息

School of Physics and Optoelectronic Technology, South China University of Technology, Guangzhou, Guangdong 510640, China.

Key Laboratory of Artificial Micro- and Nanostructures of Ministry of Education and School of Physics and Technology, Wuhan University, Wuhan 430072, China.

出版信息

Phys Rev Lett. 2018 Mar 16;120(11):116802. doi: 10.1103/PhysRevLett.120.116802.

Abstract

Recently, the topological physics in artificial crystals for classical waves has become an emerging research area. In this Letter, we propose a unique bilayer design of sonic crystals that are constructed by two layers of coupled hexagonal array of triangular scatterers. Assisted by the additional layer degree of freedom, a rich topological phase diagram is achieved by simply rotating scatterers in both layers. Under a unified theoretical framework, two kinds of valley-projected topological acoustic insulators are distinguished analytically, i.e., the layer-mixed and layer-polarized topological valley Hall phases, respectively. The theory is evidently confirmed by our numerical and experimental observations of the nontrivial edge states that propagate along the interfaces separating different topological phases. Various applications such as sound communications in integrated devices can be anticipated by the intriguing acoustic edge states enriched by the layer information.

摘要

近年来,经典波人工晶体中的拓扑物理已成为一个新兴的研究领域。在本信函中,我们提出了一种独特的声子晶体双层设计,它由两层耦合的三角形散射体六边形阵列构成。借助额外的层自由度,通过简单地旋转两层中的散射体,实现了丰富的拓扑相图。在统一的理论框架下,解析地区分了两种谷投影拓扑声绝缘体态,即层混合和层极化拓扑谷霍尔相。沿着分隔不同拓扑相的界面传播的非平凡边缘态的数值和实验观测结果明显证实了该理论。由层信息丰富的有趣声学边缘态有望用于各种应用,如集成器件中的声音通信。

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