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Perfect Absorption Efficiency Circular Nanodisk Array Integrated with a Reactive Impedance Surface with High Field Enhancement

机译:完美的吸收效率圆纳米磁盘阵列与高阻抗增强的反应性阻抗表面集成在一起

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摘要

Infrared (IR) absorbers based on a metal–insulator–metal (MIM) have been widely investigated due to their high absorption performance and simple structure. However, MIM absorbers based on ultrathin spacers suffer from low field enhancement. In this study, we propose a new MIM absorber structure to overcome this drawback. The proposed absorber utilizes a reactive impedance surface (RIS) to boost field enhancement without an ultrathin spacer and maintains near-perfect absorption by impedance matching with the vacuum. The RIS is a metallic patch array on a grounded dielectric substrate that can change its surface impedance, unlike conventional metallic reflectors. The final circular nanodisk array mounted on the optimum RIS offers an electric field enhancement factor of 180 with nearly perfect absorption of 98% at 230 THz. The proposed absorber exhibits robust performance even with a change in polarization of the incident wave. The RIS-integrated MIM absorber can be used to enhance the sensitivity of a local surface plasmon resonance (LSPR) sensor and surface-enhanced IR spectroscopy.
机译:基于金属-绝缘体-金属(MIM)的红外(IR)吸收剂因其高吸收性能和简单结构而被广泛研究。但是,基于超薄间隔物的MIM吸收器的场增强较低。在这项研究中,我们提出了一种新的MIM吸收器结构来克服这一缺点。提出的吸收器利用电抗性阻抗表面(RIS)来增强场强,而无需使用超薄间隔物,并通过与真空相匹配的阻抗来保持接近完美的吸收。 RIS是接地电介质基板上的金属贴片阵列,可以改变其表面阻抗,这与传统的金属反射器不同。安装在最佳RIS上的最终圆形纳米磁盘阵列可提供180的电场增强因子,在230 THz时几乎具有98%的完美吸收。所提出的吸收器即使在入射波的偏振变化的情况下也表现出鲁棒的性能。 RIS集成的MIM吸收器可用于增强局部表面等离子体共振(LSPR)传感器和表面增强型IR光谱的灵敏度。

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