光子学
宽带
带宽(计算)
多路复用
光子晶体
拓扑(电路)
GSM演进的增强数据速率
光电子学
物理
计算机科学
电子工程
光学
电信
工程类
电气工程
作者
Jiajun Ma,Chunmei Ouyang,Yuting Yang,Xinyue Qian,Li Niu,Yi Liu,Quan Xu,Yanfeng Li,Zhen Tian,Jianqiang Gu,Jiaguang Han,Weili Zhang
标识
DOI:10.1117/1.apn.3.3.036004
摘要
Valley topological photonic crystals (TPCs), which are robust against local disorders and structural defects, have attracted great research interest, from theoretical verification to technical applications. However, previous works mostly focused on the robustness of topologically protected edge states and little attention was paid to the importance of the photonic bandgaps (PBGs), which hinders the implementation of various multifrequency functional topological photonic devices. Here, by systematically studying the relationship between the degree of symmetry breaking and the working bandwidth of the edge states, we present spoof surface plasmon polariton valley TPCs with broadband edge states and engineered PBGs, where the operation frequency is easy to adjust. Furthermore, by connecting valley TPCs operating at different frequencies, a broadband multifunctional frequency-dependent topological photonic device with selectively directional light transmission is fabricated and experimentally demonstrated, achieving the functions of wavelength division multiplexing and add–drop multiplexing. We provide an effective and insightful method for building multi-frequency topological photonic devices.
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