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Detailed Experiment-Theory Comparison of Mid-Infrared Metasurface Perfect Absorbers

机译:中红外超表面完美吸收剂的详细实验理论比较

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摘要

Realisation of a perfect absorber with transmittance and reflectance by a thin metasurface is one of the hot topics in recent nanophotonics prompted by energy harvesting and sensor applications ( is the energy conservation). Here we tested the optical properties of over 400 structures of metal–insulator–metal (MIM) metasurfaces for a range of variation in thickness of insulator, diameter of a disc and intra-disc distance both experimentally and numerically. Conditions of a near perfect absorption with simultaneously occurring anti-reflection property ( ) was experimentally determined. Differences between the bulk vs. nano-thin film properties at mid-IR of the used materials can be of interest for plasmonic multi-metal alloys and high entropy metals.
机译:通过薄的超颖表面实现具有透射率和反射率的完美吸收体是近年来纳米光子学中的热门话题之一,这是由能量收集和传感器应用推动的(即节能)。在这里,我们通过实验和数值测试了400多种金属-绝缘体-金属(MIM)超表面结构的光学特性,以了解绝缘子厚度,圆盘直径和圆盘内距离的变化范围。通过实验确定了同时吸收减反射性能()时接近完美吸收的条件。对于等离激元多金属合金和高熵金属,所用材料的中红外光谱的体积与纳米薄膜性质之间的差异可能是令人感兴趣的。

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