Shi Aoqian, Yan Bei, Ge Rui, Xie Jianlan, Peng Yuchen, Li Hang, Sha Wei E I, Liu Jianjun
Opt Lett. 2021 Mar 1;46(5):1089-1092. doi: 10.1364/OL.418570.
The topological corner state (TCS) and topological edge state (TES) have created new approaches to manipulate the propagation of light. The construction of a topological coupled cavity-waveguide (TCCW) based on the TCS and TES is worth looking forward to, due to its research prospects in realizing high-performance micro-nano integrated photonic devices. In this Letter, the TCCW is proposed in two-dimensional (2D) photonic crystal (PC), which possesses strong optical localization, high quality factor, and excellent robustness compared with the conventional coupled cavity-waveguide (CCCW). This work will pave the way toward designing high-performance logic gates, lasers, filters, and other micro-nano integrated photonics devices and expanding their applications.
拓扑角态(TCS)和拓扑边缘态(TES)为操控光的传播创造了新方法。基于TCS和TES构建的拓扑耦合腔波导(TCCW)因其在实现高性能微纳集成光子器件方面的研究前景而值得期待。在本信函中,二维(2D)光子晶体(PC)中提出了TCCW,与传统耦合腔波导(CCCW)相比,它具有强光学局域性、高品质因数和出色的稳健性。这项工作将为设计高性能逻辑门、激光器、滤波器及其他微纳集成光子器件并拓展其应用铺平道路。