Jing Zhao, Jiaxian Wang, Lizhen Gao, Weibin Qiu
Computer Science and Information Engineering School, Xiamen Institute of Technology, Xiamen 361021, China.
College of Information Science and Engineering, Huaqiao University, Xiamen 361021, China.
Nanomaterials (Basel). 2023 Jan 27;13(3):505. doi: 10.3390/nano13030505.
Quasi-bound states in the continuum (quasi-BIC) in all-dielectric metasurfaces provide a crucial platform for sensing due to its ability to enhance strong matter interactions between light-waves and analytes. In this study, a novel high-sensitivity all-dielectric sensor composed of a periodic array of silicon (Si) plates with square nanoholes in the continuous near-infrared band is theoretically proposed. By adjusting the position of the square nanohole, the symmetry-protected BIC and Friedrich-Wintgen BIC (FW-BIC) can be excited. The torodial dipole (TD) and electric quadruple (EQ) are demonstrated to play a dominating role in the resonant modes by near-field analysis and multipole decomposition. The results show that the sensitivity, the Q-factor, and the corresponding figure of merit (FOM) can simultaneously reach 399 nm/RIU (RIU is refractive index unit), 4959, and 1281, respectively. Compared with other complex nanostructures, the proposed metasurface is more feasible and practical, which may open up an avenue for the development of ultrasensitive sensors.
全介质超表面中的连续谱准束缚态(quasi-BIC)因其能够增强光波与分析物之间的强物质相互作用,为传感提供了一个关键平台。在本研究中,理论上提出了一种新型高灵敏度全介质传感器,它由连续近红外波段具有方形纳米孔的硅(Si)板周期性阵列组成。通过调整方形纳米孔的位置,可以激发对称性保护的BIC和弗里德里希 - 温特根BIC(FW-BIC)。通过近场分析和多极分解表明,环形偶极子(TD)和电四极子(EQ)在共振模式中起主导作用。结果表明,灵敏度、品质因数和相应的品质因数优值(FOM)分别可同时达到399 nm/RIU(RIU是折射率单位)、4959和1281。与其他复杂纳米结构相比,所提出的超表面更可行、更实用,这可能为超灵敏传感器的发展开辟一条途径。