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光子反手性边缘态的观测

Observation of Photonic Antichiral Edge States.

作者信息

Zhou Peiheng, Liu Gui-Geng, Yang Yihao, Hu Yuan-Hang, Ma Sulin, Xue Haoran, Wang Qiang, Deng Longjiang, Zhang Baile

机构信息

National Engineering Research Center of Electromagnetic Radiation Control Materials, State Key Laboratory of Electronic Thin Film and Integrated Devices, University of Electronic Science and Technology of China, Chengdu 610054, China.

Division of Physics and Applied Physics, School of Physical and Mathematical Sciences, Nanyang Technological University, 21 Nanyang Link, Singapore 637371, Singapore.

出版信息

Phys Rev Lett. 2020 Dec 31;125(26):263603. doi: 10.1103/PhysRevLett.125.263603.

Abstract

Chiral edge states are a hallmark feature of two-dimensional topological materials. Such states must propagate along the edges of the bulk either clockwise or counterclockwise, and thus produce oppositely propagating edge states along the two parallel edges of a strip sample. However, recent theories have predicted a counterintuitive picture, where the two edge states at the two parallel strip edges can propagate in the same direction; these anomalous topological edge states are named as antichiral edge states. Here, we report the experimental observation of antichiral edge states in a gyromagnetic photonic crystal. The crystal consists of gyromagnetic cylinders in a honeycomb lattice, with the two triangular sublattices magnetically biased in opposite directions. With microwave measurement, unique properties of antichiral edge states have been observed directly, which include tilted dispersion, chiral-like robust propagation in samples with certain shapes, and 100% scattering into backward bulk states at certain terminations. These results extend and supplement the current understanding of chiral edge states.

摘要

手性边缘态是二维拓扑材料的一个标志性特征。这类态必须沿体材料的边缘顺时针或逆时针传播,从而在条形样品的两条平行边缘产生反向传播的边缘态。然而,最近的理论预测了一种违反直觉的情况,即条形样品两条平行边缘处的两个边缘态可以沿相同方向传播;这些反常的拓扑边缘态被称为反手性边缘态。在此,我们报告了在一种旋磁光子晶体中对反手性边缘态的实验观测。该晶体由蜂窝晶格中的旋磁圆柱组成,两个三角形子晶格在相反方向上有磁偏置。通过微波测量,直接观测到了反手性边缘态的独特性质,包括倾斜色散、在具有特定形状的样品中类似手性的稳健传播,以及在某些终端处100%散射到反向体材料态中。这些结果扩展并补充了当前对手性边缘态的理解。

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