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Intensity-modulating graphene metamaterial for multiband terahertz absorption

机译:用于多频带太赫兹吸收的强度调制石墨烯超材料

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摘要

In this paper, we design a tunable strength multiband absorber consisting of a graphene metamaterial structure and a thick dielectric interlayer deposited on a metal ground plane. We investigate the tunable conductivity properties of the graphene metamaterial and demonstrate multiband absorbers with three absorption bands using a polyimide interlayer in the 0-2.25 THz range by numerical simulation. The results show that the mix absorptivity reached 99.8% at 1.99 THz, and the absorptive strength can be tuned with the modulation depth up to 84.2%. We present a theoretical interpretation based on a standing wave field, which shows that the field energy is localized inside the thicker spacer and then dissipated, effectively trapping the light in the metamaterial absorbers with negligible near-field interactions. The standing wave field theory developed here explains all the features of the multiband metamaterial absorbers and provides a profound understanding of the underlying physics. (C) 2016 Optical Society of America
机译:在本文中,我们设计了一种可调节强度的多频带吸收器,该吸收器由石墨烯超材料结构和沉积在金属接地面上的厚介电中间层组成。我们研究了石墨烯超材料的可调节电导率特性,并通过数值模拟演示了在0-2.25 THz范围内使用聚酰亚胺夹层的具有三个吸收带的多带吸收体。结果表明,在1.99 THz时,混合材料的吸收率达到99.8%,调制深度高达84.2%时,可以调节吸收强度。我们基于驻波场提出一种理论解释,表明场能集中在较厚的间隔物内部,然后耗散,从而有效地将光捕获在超材料吸收器中,而近场相互作用可忽略不计。此处发展的驻波场理论解释了多频带超材料吸收体的所有特征,并提供了对基础物理学的深刻理解。 (C)2016美国眼镜学会

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