Realization of Topology-Controlled Photonic Cavities in a Valley Photonic Crystal
Bei Ping Yan, Baoliang Liao, Fulong Shi, Xiang Xi, Yuan Cao, Kexin Xiang, Yan Meng, Linyun Yang 等 14 位
Southern University of Science and Technology Wuhan University of Science and Technology Sun Yat-sen University Dongguan University of Technology
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摘要与影响
We report the experimental realization of a new type of topology-controlled photonic cavities in valley photonic crystals by adopting judiciously oriented mirrors to localize the valley-polarized edge states along their propagation path. By using microwave frequency- and time-domain measurements, we directly observe the strong confinement of electromagnetic energy at the mirror surface due to the extended time delay required for the valley index flipping. Moreover, we experimentally demonstrate that both the degree of energy localization and quality factors of the topology-controlled photonic cavities are determined by the valley-flipping time which is controlled by the topology of the mirror. These results extend and complement the current design paradigm of topological photonic cavities.
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物理Photonic Crystals and Applications
Photonic and Optical Devices · Topological Materials and Phenomena
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