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Broadband Ultra-Thin Terahertz Absorber with Graphene-Based Metamaterial Films

机译:宽带超薄太赫兹吸收器和基于石墨烯的超材料薄膜

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In this paper, a novel terahertz absorber was proposed. By utilizing the different SPPs existing conditions in metal and graphene, inverse currents were produced to break the ways of electromagnetic waves. The whole thickness of the model is 1.5 um. A cross-type metal gold, a grapheme sheet and a silicon dioxide substrate were fabricated to boost the resonance at 15.6THz. The bandwidth reaches 202GHz with 99% and 90% absorption ratio and the results show great absorption in both TE and TM polarized waves. For detailing the function of the graphene, the models with and without graphene were simulated in the same condition for comparison. According to the analysis results, a multiple layer model is proposed to further improve the bandwidth and gain the absorption from 13.8THz to 14.6THz, which basically correspond to our theory expectation.
机译:本文提出了一种新型的太赫兹吸收器。通过利用金属和石墨烯中不同的SPP存在条件,产生了逆电流以破坏电磁波的方式。模型的整体厚度为1.5 um。制作了十字型金属金,石墨烯片和二氧化硅衬底,以增强15.6THz的共振。带宽达到202GHz,吸收率达到99%和90%,结果表明TE和TM偏振波均具有很大的吸收率。为了详细说明石墨烯的功能,在相同条件下模拟了具有和不具有石墨烯的模型以进行比较。根据分析结果,提出了一种多层模型,以进一步提高带宽并从13.8THz到14.6THz获得吸收,这基本符合我们的理论预期。

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