Author:
Shi Chaoying,Hu Jinhua,Liu Xiuhong,Liang Junfang,Zhao Jijun,Han Haiyan,Zhu Qiaofen
Abstract
Herein, we theoretically demonstrate that a double-layer symmetric gratings (DLSG) resonator consisting of a low-refractive-index layer sandwiched between two high-contrast gratings (HCG) layers, can host dual-band high-quality (Q) factor resonance. We find that the artificial bound states in the continuum (BIC) and Fabry–Pérot BIC (FP-BIC) can be induced by optimizing structural parameters of DLSG. Interestingly, the artificial BIC is governed by the spacing between the two rectangular dielectric gratings, while the FP-BIC is achieved by controlling the cavity length of the structure. Further, the two types of BIC can be converted into quasi-BIC (QBIC) by either changing the spacing between adjacent gratings or changing the distance between the upper and lower gratings. The simulation results show that the dual-band high-performance sensor is achieved with the highest sensitivity of 453 nm/RIU and a maximum figure of merit (FOM) of 9808. Such dual-band high-Q resonator is expected to have promising applications in multi-wavelength sensing and nonlinear optics.
Funder
National Natural Science Foundation of China
Graduate Student Innovation Ability Funding Project of the Department of Education of Hebei Province
National Natural Science Foundation of Hebei Province
Scientific Research Project of the Department of Education of Hebei Province
Open Project of Shandong Key Laboratory of Optics and Photonic Device
Subject
Electrical and Electronic Engineering,General Physics and Astronomy,General Materials Science
Cited by
13 articles.
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