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Tunable dual-band perfect metamaterial absorber based on monolayer graphene arrays as refractive index sensor

机译:基于单层石墨烯阵列的可调双频带完美的超材料吸收器作为折射率传感器

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摘要

In this study, we propose and numerically investigate a tunable dual-band perfect metamaterial absorber that is based on monolayer graphene arrays in the terahertz region. The proposed structure of the metamaterial absorber consists of a perforated graphene disk array on top of a gold ground plate spaced by a SiO(2)dielectric substrate. The absorber achieves almost 100% absorption peaks at 4.7 and 10.7 THz. The resonance frequency and intensity can be adjusted by controlling the graphene conductivity and the structural parameters. Moreover, the absorber is insensitive to the variation in incident angle. The presented absorber can work as a refractive index sensor and the sensitivity reaches 0.67 and 2.33 THz/RIU. Furthermore, it has potential applications in communication, and photovoltaic devices because of its flexible design and stable properties.
机译:在本研究中,我们提出并数值研究了基于太赫兹地区的单层石墨烯阵列的可调谐双频带完美的超材料吸收器。所提出的超材料吸收器的结构包括在由SiO(2)介电基板间隔开的金接地板的顶部的穿孔石墨烯盘阵列。吸收剂在4.7和10.7至7 ZHz上实现了几乎100%的吸收峰。通过控制石墨烯电导率和结构参数,可以调节共振频率和强度。此外,吸收器对入射角的变化不敏感。所提出的吸收器可以作为折射率传感器的工作,灵敏度达到0.67和2.33 THz / Riu。此外,由于其灵活的设计和稳定性,它具有通信和光伏器件中的潜在应用。

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