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Tunable Nearly Perfect Absorber Based on Graphene Metamaterials at the Mid-Infrared Region

机译:基于中红外区域的石墨烯超材料可调几乎完美的吸收器

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We propose the idea of a tunable nearly perfect absorber based on graphene metamaterial consisting of a periodically arranged graphene ribbons (bright mode) and the inverse slots in the thin graphene film (dark mode). The absorption peak has a narrow linewidth of 160 nm and the absorbance approaching to 97.12%. The fascinating absorption feature not merely due to plasmonically induced absorption arising from destructive interference between the bright and dark mode but also the metamaterial absorption. We have testified numerically that the electric fields are highly confined inside the slot. The mid-IR absorption spectrum can be dynamically tuned by a small change in the chemical potential of graphene, in addition to varying geometrical parameters. Our paper considers a situation that represents an intermediate plasmonic coupling regime, between near-field and far-field coupling. Such absorber possesses potential for applications in mid-IR nanophotonic devices.
机译:我们提出了基于石墨烯超材料的可调谐近乎完美的吸收器的思想,该石墨烯超材料由周期性地布置的石墨烯带(明亮模式)和薄石墨烯膜(暗模式)中的逆槽构成。 吸收峰具有160nm的窄线宽,吸光度接近97.12%。 迷人的吸收特征不仅仅是由于在明亮和暗模式之间产生的体相诱导的吸收,而且是超高模式而且超材料吸收。 我们在数值上进行了作证,电场在槽内高度限制。 除了不同的几何参数之外,可以通过石墨烯的化学电位的小变化动态调谐中间IR吸收光谱。 我们的论文考虑了一种形式,该情况表示近场和远场联轴器之间的中间等离子体耦合制度。 这种吸收器具有中红外纳米光电装置中的应用的潜力。

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