电磁感应透明
偶极子
联轴节(管道)
格子(音乐)
物理
凝聚态物理
材料科学
拉比频率
耦合强度
模耦合
非线性系统
硅
电场
质量(理念)
非线性光学
光电子学
共振(粒子物理)
慢光
环面
磁偶极-偶极相互作用
光学
谱线
分子物理学
蓝移
量子光学
句号(音乐)
耦合模理论
晶格常数
塞尔效应
光谱学
微波食品加热
作者
Rixing Huang,Zhiyu Chang,Qingxi Fan,Kan Chang,Zhenrong Zhang,Guangyuan Li
标识
DOI:10.1002/adom.202503510
摘要
ABSTRACT This work reports that the coupling of dual‐band quasi‐bound states in the continuum (qBICs) in an all‐dielectric metasurface composed of periodic silicon nanodisks can be tuned from the collective electromagnetically induced transparency (EIT) like effect to the Rabi splitting by adjusting the lattice period or the nanodisk diameter. These two qBIC modes are out‐of‐plane toroidal dipole resonance and electric dipole surface lattice resonance, which are not allowed to emit at point. When the lattice period decreases or the nanodisk diameter increases, these two qBICs experience different spectral shifts and spectrally overlap when they have larger quality factors, resulting in enhanced coupling strength that transits from the weak‐ to the strong‐coupling regime. Specially, in the weak coupling regime, the slow‐light effect accompanied with the EIT‐like phenomenon can be tuned by the quality factor. Our findings open a new paradigm for regulating the coupling of qBICs, which could find applications in lasing, nonlinear optics, and biochemical sensing.
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