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手性光子超材料中的理想非常规外尔点

Ideal Unconventional Weyl Point in a Chiral Photonic Metamaterial.

作者信息

Yang Yihao, Gao Zhen, Feng Xiaolong, Huang Yue-Xin, Zhou Peiheng, Yang Shengyuan A, Chong Yidong, Zhang Baile

机构信息

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

Centre for Disruptive Photonic Technologies, The Photonics Institute, Nanyang Technological University, 50 Nanyang Avenue, Singapore 639798, Singapore.

出版信息

Phys Rev Lett. 2020 Oct 2;125(14):143001. doi: 10.1103/PhysRevLett.125.143001.

Abstract

Unconventional Weyl points (WPs), carrying topological charge 2 or higher, possess interesting properties different from ordinary charge-1 WPs, including multiple Fermi arcs that stretch over a large portion of the Brillouin zone. Thus far, such WPs have been observed in chiral materials and acoustic metamaterials, but there has been no clean demonstration in photonics in which the unconventional photonic WPs are separated from trivial bands. We experimentally realize an ideal symmetry-protected photonic charge-2 WP in a three-dimensional topological chiral microwave metamaterial. We use field mapping to directly observe the projected bulk dispersion, as well as the two long surface arcs that form a noncontractible loop wrapping around the surface Brillouin zone. The surface states span a record-wide frequency window of around 22.7% relative bandwidth. We demonstrate that the surface states exhibit a novel topological self-collimation property and are robust against disorder. This work provides an ideal photonic platform for exploring fundamental physics and applications of unconventional WPs.

摘要

非传统的外尔点(WPs)携带拓扑电荷2或更高,具有与普通电荷为1的WPs不同的有趣特性,包括延伸到布里渊区很大一部分的多个费米弧。到目前为止,这种WPs已在手性材料和声子超材料中被观测到,但在光子学中尚未有将非传统光子WPs与平凡能带分离的清晰证明。我们通过实验在三维拓扑手性微波超材料中实现了一种理想的对称保护光子电荷为2的WP。我们用场映射直接观测投影的体色散,以及形成围绕表面布里渊区的不可收缩回路的两条长表面弧。表面态跨越了相对带宽约22.7%的创纪录宽频率窗口。我们证明表面态展现出一种新颖的拓扑自准直特性且对无序具有鲁棒性。这项工作为探索非传统WPs的基础物理和应用提供了一个理想的光子平台。

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