Hybrid topological photonic crystals

Author:

Wang Yanan,Wang Hai-XiaoORCID,Liang Li,Zhu Weiwei,Fan Longzhen,Lin Zhi-Kang,Li Feifei,Zhang Xiao,Luan Pi-Gang,Poo YinORCID,Jiang Jian-Hua,Guo Guang-YuORCID

Abstract

AbstractTopologically protected photonic edge states offer unprecedented robust propagation of photons that are promising for waveguiding, lasing, and quantum information processing. Here, we report on the discovery of a class of hybrid topological photonic crystals that host simultaneously quantum anomalous Hall and valley Hall phases in different photonic band gaps. The underlying hybrid topology manifests itself in the edge channels as the coexistence of the dual-band chiral edge states and unbalanced valley Hall edge states. We experimentally realize the hybrid topological photonic crystal, unveil its unique topological transitions, and verify its unconventional dual-band gap topological edge states using pump-probe techniques. Furthermore, we demonstrate that the dual-band photonic topological edge channels can serve as frequency-multiplexing devices that function as both beam splitters and combiners. Our study unveils hybrid topological insulators as an exotic topological state of photons as well as a promising route toward future applications in topological photonics.

Funder

National Natural Science Foundation of China

Natural Science Foundation of Guangxi Province

STP of Jiangsu Province

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry,Multidisciplinary

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