论文标题

古典高阶拓扑绝缘子

Classical higher-order topological insulators

论文作者

Xie, Biye, Wang, Hai-Xiao, Zhang, Xiujuan, Zhan, Peng, Jiang, Jian-Hua, Lu, Minghui, Chen, Yanfeng

论文摘要

拓扑状态培养具有光子学,血浆,声学和语音学中空前功能的设备的出现。作为最近发现的成员之一,越来越多地探索了高阶拓扑绝缘子(HOTIS),其具有较低的拓扑边界状态,从而导致了丰富的拓扑操作,指导和捕获古典波浪的机制。在这里,我们概述了经典波浪中Hotis的当前发展,包括基本原理,独特的物理特性,各种实验实现,新现象和潜在的应用。基于这些讨论,我们评论了该领域的趋势和挑战以及高阶拓扑对其他研究领域的影响。

Topological states nurtures the emergence of devices with unprecedented functions in photonics, plasmonics, acoustics and phononics. As one of the recently discovered members, higher-order topological insulators (HOTIs) have been increasingly explored, featuring lower-dimensional topological boundary states, leading to rich mechanisms for topological manipulation, guiding and trapping of classical waves. Here, we provide an overview of current developments of HOTIs in classical waves including basic principles, unique physical properties, various experimental realizations, novel phenomena and potential applications. Based on these discussions, we remark on the trends and challenges in this field and the impacts of higher-order topology on other research fields.

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