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Broad-band and polarization-independent perfect absorption in graphene- gold cylinder arrays at visible and near-infrared wavelengths

机译:石墨烯-金圆柱阵列在可见光和近红外波长下的宽带和偏振无关的完美吸收

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摘要

A wavelength tunable perfect absorber with graphene-hexagonal gold (Au) cylinder array on a ground plate is investigated theoretically. The interactions between electromagnetic (EM) waves and monolayer graphene are analyzed through the field distributions and spectral responses in detail. The finite-difference-time-domain (FDTD) method is used to investigate the tunable properties of the absorber. It is demonstrated that in an optimized configuration, monolayer graphene can interact with light via critical coupling, and the absorptance can be greatly enhanced and reach to 100% for both transverse magnetic (TM) and transverse electronic (TE) polarizations. Furthermore, the influence of geometrical parameters of the structure on the response of the hybrid structure is studied. It is expected that the proposed graphene perfect absorbers can be applied for many applications in the visible (VIS) and the near-infrared (NIR) spectral ranges such as wavelength selective infrared photodetectors and plasmonic sensors.
机译:理论上研究了在接地板上具有石墨烯-六角金(Au)圆柱阵列的波长可调完美吸收体。通过场分布和光谱响应,详细分析了电磁波与单层石墨烯之间的相互作用。时域有限差分法(FDTD)用于研究吸收器的可调特性。结果表明,在优化配置中,单层石墨烯可以通过临界耦合与光相互作用,并且吸收率可以大大提高,并且对于横向磁(TM)和横向电子(TE)极化均达到100%。此外,研究了结构的几何参数对混合结构响应的影响。可以预期,所提出的石墨烯完美吸收体可用于可见光(VIS)和近红外(NIR)光谱范围的许多应用,例如波长选择性红外光电探测器和等离子体传感器。

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