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Low-bias active control of terahertz waves by coupling large-area CVD graphene to a terahertz metamaterial

机译:通过将大面积CVD石墨烯耦合到太赫兹超材料来对太赫兹波进行低偏置主动控制

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摘要

We propose an hybrid graphene/metamaterial device based on terahertz electronic split-ring resonators directly evaporated on top of a large-area single-layer CVD graphene. Room temperature time-domain spectroscopy measurements in the frequency range from 250 GHz to 2.75 THz show that the presence of the graphene strongly changes the THz metamaterial transmittance on the whole frequency range. The graphene gating allows active control of such interaction, showing a modulation depth of 11.5% with an applied bias of 10.6 V. Analytical modeling of the device provides a very good qualitative and quantitative agreement with the measured device behavior. The presented system shows potential as a THz modulator and can be relevant for strong light-matter coupling experiments.
机译:我们提出了一种基于太赫兹电子裂环谐振器的混合石墨烯/超材料器件,该器件直接蒸发在大面积单层CVD石墨烯的顶部。在250 GHz至2.75 THz频率范围内的室温时域光谱测量结果表明,石墨烯的存在极大地改变了THz超材料在整个频率范围内的透射率。石墨烯门控可以主动控制这种相互作用,显示出11.5%的调制深度和10.6 V的施加偏压。器件的分析模型与所测量的器件行为提供了非常良好的定性和定量一致性。所提出的系统显示出作为THz调制器的潜力,并且可能与强光-物质耦合实验有关。

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