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Graphene-dielectric integrated terahertz metasurfaces

机译:石墨烯电介质太赫兹超颖表面

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In this paper we discuss graphene-dielectric integrated terahertz metasurfaces as an alternative approach to graphene-metal metamaterials for providing effective control of electromagnetic beam propagation at terahertz wavelengths. Our structures consist of a passive lossless dielectric pattern and a reconfigurable graphene sheet whose terahertz optical conductivity could be actively tuned chemically, electrically, or optically. In particular, we investigate dielectric patterns consisting of pillar- and circular hole arrays and show that via optimizing the geometric dimensions in these patterns it is possible to attain almost complete terahertz absorption at an arbitrary frequency of interest. Furthermore, via either (i) controlling the thickness of a low-index dielectric spacer located between the dielectric pattern and the graphene sheet, or (ii) choosing a material with an appropriate index of refraction when constructing the dielectric pattern, it is possible to control the sensitivity of the overall structure to variations in the graphene sheet conductivity. Full-wave electromagnetic simulations are supported by proof-of-principle experiments on structures fabricated via patterning of a silicon-on-insulator wafer followed by graphene transfer and chemical doping. Overall, the proposed approach can lead to the construction of efficient tunable terahertz absorbers; however, other tailored electromagnetic responses might be also possible via the selection of appropriate dielectric patterns.
机译:在本文中,我们讨论石墨烯-电介质集成的太赫兹超表面作为石墨烯-金属超材料的替代方法,以提供对太赫兹波长的电磁束传播的有效控制。我们的结构包括一个无源无损介电图案和一个可重配置的石墨烯片,其太赫兹光导率可以通过化学,电或光学方式进行主动调节。特别是,我们研究了由柱状和圆形孔阵列组成的介电图案,并表明通过优化这些图案中的几何尺寸,可以在任意感兴趣的频率下获得几乎完全的太赫兹吸收。此外,通过(i)控制位于介电图案和石墨烯片之间的低折射率介电间隔物的厚度,或(ii)在构造介电图案时选择具有适当折射率的材料,可以控制整个结构对石墨烯片电导率变化的敏感性。原理证明实验支持全波电磁仿真,该实验是通过对绝缘体上硅晶片进行构图,然后进行石墨烯转移和化学掺杂而制造的。总的来说,所提出的方法可以导致构建高效的可调谐太赫兹吸收器。然而,通过选择适当的介电图案,其他定制的电磁响应也是可能的。

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