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基于介质-介质-金属三层薄膜材料的超窄带双频完美吸收器

Ultra Narrow Dual-Band Perfect Absorber Based on a Dielectric-Dielectric-Metal Three-Layer Film Material.

作者信息

Liu Bin, Wu Pinghui, Zhu Hongyang, Lv Li

机构信息

Rural Revitalization Institute, Linyi University, Linyi 276000, China.

Center for International Education, Philippine Christian University, Manila 1004, Philippines.

出版信息

Micromachines (Basel). 2021 Dec 12;12(12):1552. doi: 10.3390/mi12121552.

Abstract

This paper proposes a perfect metamaterial absorber based on a dielectric-dielectric-metal structure, which realizes ultra-narrowband dual-band absorption in the near-infrared band. The maximum Q factor is 484. The physical mechanism that causes resonance is hybrid coupling between magnetic polaritons resonance and plasmon resonance. At the same time, the research results show that the intensity of magnetic polaritons resonance is much greater than the intensity of the plasmon resonance. By changing the structural parameters and the incident angle of the light source, it is proven that the absorber is tunable, and the working angle tolerance is 15°. In addition, the sensitivity and figure of merit when used as a refractive index sensor are also analyzed. This design provides a new idea for the design of high-Q optical devices, which can be applied to photon detection, spectral sensing, and other high-Q multispectral fields.

摘要

本文提出了一种基于介质-介质-金属结构的完美超材料吸收体,该吸收体在近红外波段实现了超窄带双波段吸收。最大品质因数为484。导致共振的物理机制是磁极化子共振与表面等离子体共振之间的混合耦合。同时,研究结果表明,磁极化子共振的强度远大于表面等离子体共振的强度。通过改变结构参数和光源的入射角,证明了该吸收体具有可调谐性,工作角度容差为15°。此外,还分析了其作为折射率传感器时的灵敏度和品质因数。该设计为高Q值光学器件的设计提供了新思路,可应用于光子探测、光谱传感等高Q值多光谱领域。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/95c6/8708341/24d557d56a43/micromachines-12-01552-g001.jpg

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