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基于全介质亚结构中高Q因子多法诺共振的多功能传感应用。

Multi-function sensing applications based on high Q-factor multi-Fano resonances in an all-dielectric metastructure.

作者信息

Cao Shuangshuang, Fan Xinye, Fang Wenjing, Du Mengcheng, Sun Qinghe, Niu Huijuan, Li Chuanchuan, Wei Xin, Bai Chenglin, Tao Jifang, Li Mingxin, Chen Baoxi, Kumar Santosh

机构信息

School of Physics Science and Information Engineering, Liaocheng University, Liaocheng, 252000, China.

Institute of Semiconductors, Chinese Academy of Sciences, Beijing, 100083, China.

出版信息

Biomed Opt Express. 2024 Mar 15;15(4):2406-2418. doi: 10.1364/BOE.518910. eCollection 2024 Apr 1.

Abstract

A multi-function sensor based on an all-dielectric metastructure for temperature and refractive index sensing simultaneously is designed and analyzed in this paper. The structure is composed of a periodic array of silicon dimers placed on the silicon dioxide substrate. By breaking the symmetry of the structure, the ideal bound states in the continuum can be converted to the quasi-bound states in the continuum, and three Fano resonances are excited in the near-infrared wavelength. Combining with the electromagnetic field distributions, the resonant modes of three Fano resonances are analyzed as magnetic dipole, magnetic toroidal dipole, and electric toroidal dipole, respectively. The proposed sensor exhibits an impressive maximal Q-factor of 9352, with a modulation depth approaching 100%. Our investigation into temperature and refractive index sensing properties reveals a maximum temperature sensitivity of 60 pm/K. Regarding refractive index sensing, the sensitivity and figure of merit are determined to be 279.5 nm/RIU and 2055.1 RIU, respectively. These findings underscore the potential of the all-dielectric metastructure for simultaneous multi-parameter measurements. The sensor's versatility suggests promising applications in biological and chemical sensing.

摘要

本文设计并分析了一种基于全介质亚结构的多功能传感器,用于同时进行温度和折射率传感。该结构由放置在二氧化硅衬底上的硅二聚体周期性阵列组成。通过打破结构的对称性,连续统中的理想束缚态可以转换为连续统中的准束缚态,并且在近红外波长激发了三个法诺共振。结合电磁场分布,分别将三个法诺共振的共振模式分析为磁偶极子、磁环形偶极子和电环形偶极子。所提出的传感器展现出高达9352的令人印象深刻的最大品质因数,调制深度接近100%。我们对温度和折射率传感特性的研究揭示了60 pm/K的最大温度灵敏度。对于折射率传感,灵敏度和品质因数分别确定为279.5 nm/RIU和2055.1 RIU。这些发现强调了全介质亚结构在同时进行多参数测量方面的潜力。该传感器的多功能性表明其在生物和化学传感方面具有广阔的应用前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bc1b/11019704/e4b1869a5393/boe-15-4-2406-g001.jpg

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