首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >An ultra-broadband and optically transparent metamaterial absorber based on multilayer indium-tin-oxide structure
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An ultra-broadband and optically transparent metamaterial absorber based on multilayer indium-tin-oxide structure

机译:基于多层铟锡氧化锡结构的超宽带和光学透明超材料吸收器

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摘要

In this work, an ultra-broadband and polarization-insensitive metamaterial absorber (MA) with high optical transparency is presented. Indium-tin-oxide (ITO) films are used as frequency selective surfaces in multiple conductive layers and also as the reflective backplane. Numerical simulation analysis demonstrates that the absorptivity of the proposed absorber exceeds 90% in the frequency range from 10 to 75.5 GHz, corresponding to a relative absorption bandwidth of 153%. The proposed structure has a total thickness of 2.9 mm, which is approximately 1/10 of the free space wavelength of its lowest operating frequency. The absorber also has good polarization insensitivity due to its symmetric geometry. Moreover, for TE-polarized waves, the proposed absorber can maintain an absorptivity greater than 70% for frequencies ranging from 10 to 80 GHz as the incident angle is increased to 45 degrees. For TM-polarized waves, it provides absorptivity of more than 80% at incident angles up to 60 degrees. Surface current distribution on each conductive ITO layer was simulated to analyze the absorption mechanism of the MA. A prototype composed of 16 x 16 unit cells was fabricated and the experimental results show a good agreement with the numerical simulations. Due to its ultra-wideband absorption and wide-incident-angle stability, the proposed MA has potential value in electromagnetic applications such as optically transparent EM shielding and microwave radiation protection.
机译:在这项工作中,提出了一种具有高光学透明度的超宽带偏振不敏感超材料吸收体(MA)。氧化铟锡(ITO)薄膜在多个导电层中用作频率选择性表面,也用作反射背板。数值模拟分析表明,在10~75.5ghz的频率范围内,该吸收材料的吸收率超过90%,相对吸收带宽为153%。拟议结构的总厚度为2.9 mm,约为其最低工作频率自由空间波长的1/10。由于其对称的几何结构,该吸收体还具有良好的偏振不敏感性。此外,对于TE极化波,当入射角增加到45度时,对于10到80 GHz的频率范围,所提出的吸收器可以保持大于70%的吸收率。对于TM极化波,它在60度的入射角下提供80%以上的吸收率。模拟了各导电ITO层的表面电流分布,分析了MA的吸收机理。制作了一个由16×16单元组成的原型,实验结果与数值模拟结果吻合良好。由于其超宽带吸收和宽入射角稳定性,该MA在光学透明电磁屏蔽和微波辐射防护等电磁应用中具有潜在价值。

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