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Ultra-broadband terahertz absorber based on graphene ribbons

机译:基于石墨烯丝带的超宽带太赫兹吸收器

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摘要

Terahertz (THz) absorbers have been verified to be a promising candidate for the biosensing and imaging modern devices. In this paper, an ultra-broadband THz absorber based on periodic arrays of graphene ribbons (PAGRs) is presented. The recently proposed analytical circuit model of PAGRs besides a developed transmission line theory is used to describe the absorber structure as circuit elements. Using circuit theory and impedance matching concept, the input impedance of the structure is adjusted to be closely matched to the free space in a wide frequency range. As a result, the bandwidth of 90% absorption extended up to 100% of central frequency. The results show that the Full-wave simulations (while using Finite Element Method) and circuit model approach verify each other. The proposed structure and its performance can be a useful structure and be utilized in filters and sensors.
机译:已经验证了太赫兹(Thz)吸收剂是生物传感和成像现代设备的有希望的候选者。 本文提出了一种基于石墨烯带(PAGRS)的周期性阵列的超宽带THZ吸收器。 除了发育线理论之外的最近提出的PAGR分析电路模型用于描述作为电路元件的吸收器结构。 使用电路理论和阻抗匹配概念,调整结构的输入阻抗以与宽频范围内的自由空间紧密匹配。 结果,90%吸收的带宽延伸到中心频率的100%。 结果表明,全波仿真(在使用有限元方法时)和电路模型方法互相验证。 所提出的结构及其性能可以是有用的结构,并在过滤器和传感器中使用。

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