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Giant-tunable bidirectional Goos–H?nchen shifts via phase change material-based metasurfaces with quasi-bound states in continuum

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摘要 We propose a novel approach for investigating the tunable Goos–H?nchen(GH)shift via an all-dielectric metasurface that incorporates phase change materials(PCMs).By introducing material asymmetry through the reconfigurable characteristic of PCMs while maintaining fixed geometric parameters,we can achieve tunable dual quasi-bound states in the continuum with ultrahigh quality factors(Q factors).Enabled by such tunable dual modes with significant phase changes,the PCM-based metasurface exhibits giant-tunable bidirectional GH shifts compared to conventional metasurfaces.Notably,the GH shift exhibits multidimensional tunability,including PCM-driven switching(amorphous to crystalline),incident-angle dependence(θ),and wavelength selectivity(λ).The maximum observed shift reaches approximately 104 wavelengths,accompanied by a corresponding Q factor of 107.Our work demonstrates its potential for applications in ultrahigh-precision multifunctional devices,from biosensing to reconfigurable nanophotonic switches.
作者 Jiaqing Liu Yue Zheng Xiao Li Jingwen Li Guohao Zhang Daxing Dong Dongmei Liu Yuwen Jia Yangyang Fu Youwen Liu 刘佳晴;郑悦;李潇;李静文;张国昊;董大兴;刘冬梅;贾玉雯;伏洋洋;刘友文
出处 《Chinese Physics B》 2025年第7期365-370,共6页 中国物理B(英文版)
基金 Project supported by the National Natural Science Foundation of China(Grant No.12274225) the Fundamental Research Funds for the Central Universities(Grant No.NS2023056) the Natural Science Foundation of Hebei Province,China(Grant No.B2024209014) the Basic Scientific Research Project of Hebei Provincial Department of Education(Grant No.JJC2024059)。
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