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A wideband and polarization-insensitive graphene-based metamaterial absorber

机译:基于宽带和极化不敏感石墨烯的超材料吸收器

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摘要

The concept of a wideband and polarization-insensitive absorber based on graphene for terahertz (THz) applications is presented in this paper. To broaden the absorption bandwidth, we have combined two concentric rectangular rings with cross-shaped strips. These are located on a silicon substrate. The analysis of the proposed absorber is based on the impedance matching theory and finite difference time domain (FDTD) methods. The simulated results show that the proposed absorber has a wideband absorption. The obtained bandwidth for absorption coefficients of 0.9 and 0.7 are 16% and 20.3%, respectively over the range of 2.47-2.9 THz and 2.39-2.93 THz. The bandwidth and absorption performance of the absorber can be adjusted by the control of the conductivity of graphene by applying an external DC-bias voltage. Due to the symmetrical design of the structure, the presented absorber is polarization insensitive. Furthermore, due to having a cross-strip structure, the performance of the proposed absorber is insensitive to the angle of the radiant wave. Thus, the proposed absorber can be considered a suitable candidate for various THz applications.
机译:本文介绍了基于石墨烯的宽带和极化不敏感吸收剂的概念。为了拓宽吸收带宽,我们将两个同心矩形环组合具有交叉形条带。这些位于硅衬底上。对所提出的吸收器的分析基于阻抗匹配理论和有限差分时域(FDTD)方法。模拟结果表明,所提出的吸收器具有宽带吸收。对于0.9和0.7的吸收系数的所得带宽分别为2.47-2.9至9至9至9至9至9六至第22.9至9分钟的16%和20.3%。通过施加外部直流偏置电压,可以通过控制石墨烯的电导率来调节吸收器的带宽和吸收性能。由于结构的对称性设计,所示的吸收器是极化不敏感的。此外,由于具有交叉条形结构,所提出的吸收器的性能对辐射波的角度不敏感。因此,所提出的吸收器可以被认为是各种THz应用的合适候选者。

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