Yang Lei, Yu ShiLin, Li Hao, Zhao TongGang
Opt Express. 2021 May 10;29(10):14905-14916. doi: 10.1364/OE.419941.
Both toroidal dipoles, electric dipoles and magnetic dipoles belong to one type of electromagnetic excitation. In this paper, we present an all-dielectric metasurface composed of an array of square nanoholes. It can simultaneously generate four resonance responses excited by TD, EQ and MD in the continuous near-infrared band. By introducing the in-plane symmetry breaking of the unit cell, asymmetric dielectric nanohole arrays are used to achieve two quasi-BIC resonance modes with high Q-factors excited by EQ and MD. The paper theoretically analyzes and demonstrates the relationship between structural asymmetry and the radiative Q-factor of two Fano resonances, that are governed by symmetry-protected BICs. And multipole decomposition and near-field analysis are performed to demonstrate the dominant role of various electromagnetic excitations in the four modes. The spectra response is also calculated for different incident polarization angles and medium refractive indices. The proposed metasurface is more feasible and practical compared to other complex nanostructures, which may open avenues for the development of applications such as biochemical sensing, optical switches and optical modulators, and provide a reference for the design of devices with polarization-independent properties.
环形偶极子、电偶极子和磁偶极子均属于一类电磁激发。在本文中,我们展示了一种由方形纳米孔阵列构成的全介质超表面。它能够在连续近红外波段同时产生由环形偶极子、电偶极子和磁偶极子激发的四种共振响应。通过引入晶胞的面内对称性破缺,非对称介质纳米孔阵列用于实现由电偶极子和磁偶极子激发的具有高Q因子的两种准束缚态共振模式。本文从理论上分析并论证了结构不对称性与由对称性保护的束缚态控制的两种法诺共振的辐射Q因子之间的关系。并进行了多极分解和近场分析,以证明各种电磁激发在这四种模式中的主导作用。还针对不同的入射偏振角和介质折射率计算了光谱响应。与其他复杂的纳米结构相比,所提出的超表面更具可行性和实用性,这可能为生化传感、光开关和光调制器等应用的发展开辟道路,并为具有偏振无关特性的器件设计提供参考。