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Multilayer graphene-based metasurfaces: robust design method for extremely broadband, wide-angle, and polarization-insensitive terahertz absorbers

机译:基于多层石墨烯的METASURFACES:极其宽带,广角和极化不敏感太晶太敏感的鲁棒设计方法

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摘要

In this study, by using an equivalent circuit method, a polarization-insensitive terahertz (THz) absorber based on multilayer graphene-based metasurfaces (MGBMs) is systematically designed, providing an extremely broad absorption bandwidth (BW). The proposed absorber is a compact, three-layer structure, comprising square-, cross-, and circular-shaped graphene metasurfaces embedded between three separator dielectrics. The equivalent-conductivity method serves as a parameter retrieval technique to characterize the graphene metasurfaces as the components of the proposed circuit model. Good agreement is observed between the full-wave simulations and the equivalent-circuit predictions. The optimum MGBM absorber exhibits 90% absorbance in an extremely broad frequency band of 0.55-3.12 THz (BW = 140%). The results indicate a significant BW enhancement compared with both the previous metal-and graphene-based THz absorbers, highlighting the capability of the designed MGBM absorber. To clarify the physical mechanism of absorption, the surface current and the electric-field distributions, as well as the power loss density of each graphene metasurface, are monitored and discussed. The MGBM functionality is evaluated under a wide range of incident wave angles to prove that the proposed absorber is omnidirectional and polarization-insensitive. These superior performances guarantee the applicability of the MGBM structure as an ultra-broadband absorber for various THz applications. (C) 2018 Optical Society of America
机译:在该研究中,通过使用等效电路方法,系统地设计了基于多层石墨烯的元核(MGBMS)的极化不敏感的太敏TraiHertz(THz)吸收器,提供了极宽的吸收带宽(BW)。所提出的吸收器是一种紧凑的三层结构,包括嵌入在三个分离器电介质之间的正方形,交叉和圆形石墨烯元件。等效导电方法用作参数检索技术,以表征石墨烯元核作为所提出的电路模型的组件。在全波模拟和等效电路预测之间观察到良好的一致性。最佳MGBM吸收剂表现出&在极宽的频带中的吸光度为0.55-3.12 thz(bw = 140%)。结果表明,与以前的基于金属和石墨烯的THZ吸收器相比,显着的BW增强,突出了设计的MGBM吸收器的能力。为了阐明吸收的物理机制,监测和讨论表面电流和电场分布,以及每个石墨烯元表面的功率损耗密度。在广泛的入射波角下评估MGBM功能,以证明所提出的吸收器是全向和极化不敏感的。这些优异的性能保证MGBM结构适用于各种THZ应用的超宽带吸收器。 (c)2018年光学学会

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  • 来源
    《Applied optics》 |2018年第4期|共10页
  • 作者单位

    Iran Univ Sci &

    Technol Dept Elect Engn Tehran 1684613114 Iran;

    Iran Univ Sci &

    Technol Dept Elect Engn Tehran 1684613114 Iran;

    Iran Univ Sci &

    Technol Dept Elect Engn Tehran 1684613114 Iran;

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  • 正文语种 eng
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