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A water hybrid graphene metamaterial absorber with broadband absorption

机译:具有宽带吸收的水混合石墨烯超材料吸收器

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摘要

We propose a broadband polarization-insensitive absorber based on water and graphene resonators in the terahertz region. The absorption bandwidth of the absorber is effectively broadened by combining water with frequency dispersive permittivity and graphene resonator, which can provide a design reference for broadband metamaterial absorber in the terahertz region. The calculation results indicate that, at room temperature of 300 K, the bandwidth with absorption exceeding 90% of water-based terahertz metamaterial absorber reaches up to 4.50 THz around a central frequency of 6.77 THz at normal incidence, i.e., the relative bandwidth is 66.5%. Compared with the absorber without encapsulated water, the bandwidth with absorption over 90% of the water-based absorber is broadened 57.34%. Interestingly, the frequency dispersive permittivity property of water can not only broaden absorption bandwidth but also contribute to suppressing decline of absorption between adjacent peaks when multi resonance absorptions couple with each other. Furthermore, the proposed polarization-insensitive absorber maintains high absorption over 90% between 4.66 THz and 8.61 THz for the incident angle within 36. and performs stable at room temperature. Therefore, the absorber has potential applications in tunable sensor, thermal detector and terahertz imaging.
机译:我们提出了一种基于太赫兹地区的水和石墨烯谐振器的宽带极化不敏感吸收器。通过将水与频率分散介电常数和石墨烯谐振器组合,可以有效地扩大吸收器的吸收带宽,这可以为太赫兹区域中的宽带超材料吸收器提供设计参考。计算结果表明,在室温为300k的情况下,吸收的带宽超过90%的水基的太赫兹超材料吸收器达到正常入射,即相对带宽为66.5的中央频率达到4.77至7六个的中心频率。 %。与没有封装水的吸收器相比,吸收的带宽超过90%的水基吸收体被凸显57.34%。有趣的是,水的频率分散介电常数性能不仅可以扩大吸收带宽,而且还有助于抑制相邻峰之间的吸收的下降,当多个共振吸收相互作用时。此外,所提出的极化不敏感吸收剂在36℃内的入射角之间保持高90%和8.61 rHz的高吸收度,并在室温下进行稳定。因此,吸收器具有可调谐传感器,热检测器和太赫兹成像中的潜在应用。

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