Robust high- Q quasi-BICs in double-layer high-contrast metagrating with temperature self-compensation for refractive index sensing
作者:Jiaxi Sun, Jinhua Hu, Lei Li, Jijun Zhao · 发表于:Journal of Optics · 年份:2024 · DOI:10.1088/2040-8986/ad600f · 被引用次数:5 · 研究领域:Advanced Fiber Optic Sensors、Advanced Surface Polishing Techniques、Photonic and Optical Devices
Abstract We propose a double-layer high-contrast metagrating structure with robust high-quality ( Q ) and temperature self-compensation for four-band refractive index sensing. The structure supports four-band symmetry-protected bound states in the continuum (SP-BICs) that transform into quasi-BICs as a result of structural symmetry breaking. However, the Q -factor of these quasi-BICs are limited by perturbation parameters, hampering practical fabrication. Interestingly, tuning the cavity length, we implement four-band Fabry–Pérot bound states in the continuum (FP-BICs) to transform the resonance mode back into high- Q quasi-BICs even at large perturbations. This approach is conducive to improving robustness and modulation freedom of Q -factors. In addition, we achieve temperature self-compensation by using the double-layer high-contrast metagrating consists of two materials with opposite thermo-optic (TO) dispersions. The simulation results indicate that the largest refractive index sensitivity is 470.9 nm RIU −1 , its figure of merit is 427 818.2, and its Q -factor up to 9.3 × 10 5 . The proposed double-layer high-contrast metagrating has potential application prospects for multiplex and high-performance sensing.