Switchable THz wave absorber based on disks and its complement graphene surfaces

Q3 Physics and Astronomy Results in Optics Pub Date : 2024-06-18 DOI:10.1016/j.rio.2024.100719
Behnaz Rashidi , Ali Soldoozy , Amir Ali Mohammad Khani , Ilghar Rezaei , Sadegh Biabanifard , Toktam Aghaee
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Abstract

A new geometrical vision for a graphene-based THz wave absorber is investigated in this work. A high-performance THz absorber is proposed to exploit complementary conventional periodic arrays of graphene disks. The equivalent circuit model is modified to take account of the complement pattern. The absorber works in two different operational modes based on chemical potential values. One mode shows absorption around 1 THz while the other one expresses perfect absorption at 6 THz and 9 THz. Such a considerable shifting ability via gate stimulations makes the proposed absorber an ideal block for reconfigurable metasurface. The comparison between the circuit model and full-wave simulation verifies an excellent match while ample sensitivity analysis are reported to show the reliability of the proposed switchable THz absorber.

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基于磁盘及其互补石墨烯表面的可切换太赫兹波吸收器
本文研究了石墨烯基太赫兹波吸收器的新几何构想。利用石墨烯圆盘的互补传统周期阵列,提出了一种高性能太赫兹吸收器。为了考虑互补模式,对等效电路模型进行了修改。该吸收器根据化学势值以两种不同的工作模式工作。一种模式显示出 1 太赫兹左右的吸收,而另一种模式则显示出 6 太赫兹和 9 太赫兹的完美吸收。通过栅极刺激实现的这种可观的转换能力,使所提出的吸收器成为可重构元表面的理想模块。电路模型与全波仿真之间的比较验证了两者的完美匹配,同时报告了大量的灵敏度分析,以显示所提出的可切换太赫兹吸收器的可靠性。
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来源期刊
Results in Optics
Results in Optics Physics and Astronomy-Atomic and Molecular Physics, and Optics
CiteScore
2.50
自引率
0.00%
发文量
115
审稿时长
71 days
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