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基于硫族化物相变材料的红外光谱混合窄带等离子体吸收器设计

Design of hybrid narrow-band plasmonic absorber based on chalcogenide phase change material in the infrared spectrum.

作者信息

Alves Oliveira Israel, Gomes de Souza Igor Leonardo, Rodriguez-Esquerre Vitaly Felix

机构信息

Graduate School of Electrical Engineering, Federal University of Bahia, Salvador, 40210-630, Brazil.

Institute of Science, Technology and Innovation at the Federal University of Bahia (ICTI-UFBA), Camaçari, 42802-721, Brazil.

出版信息

Sci Rep. 2021 Nov 9;11(1):21919. doi: 10.1038/s41598-021-01479-w.

Abstract

Structures absorbing electromagnetic waves in the infrared spectral region are important optical components in key areas such as biosensors, infrared images, thermal emitters, and special attention is required for reconfigurable devices. We propose a three-dimensional metal-dielectric plasmonic absorber with a layer of PCM's (Phase Change Materials). The phase shift effects of PCMs are numerically analyzed, and it is possible to obtain a shifting control of the resonant absorption peaks between the amorphous and crystalline states using the Lorentz-Lorenz relation. By using this empirical relation, we analyzed the peak absorption shift at intermediate phases between the amorphous and the crystalline. The geometric parameters of the structure with the PCM layer in the semi-crystalline state were adjusted to exhibit strong absorption for normal incidence. The effects of the oblique incidence on the absorption for the TM and TE polarization modes were also analyzed. Our results demonstrate that PCMs have great potential for reconfigurable nanophotonic devices.

摘要

在红外光谱区域吸收电磁波的结构是生物传感器、红外图像、热发射器等关键领域中的重要光学组件,对于可重构器件需要特别关注。我们提出了一种带有一层相变材料(PCM)的三维金属-电介质等离子体吸收器。对相变材料的相移效应进行了数值分析,利用洛伦兹-洛伦兹关系可以实现非晶态和晶态之间共振吸收峰的位移控制。通过使用这个经验关系,我们分析了非晶态和晶态之间中间相的峰值吸收位移。调整了处于半晶态的带有相变材料层结构的几何参数,使其对正入射表现出强吸收。还分析了斜入射对TM和TE偏振模式吸收的影响。我们的结果表明,相变材料在可重构纳米光子器件方面具有巨大潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1a1f/8578665/0e485b7597e8/41598_2021_1479_Fig1_HTML.jpg

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