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Circuit modeling of ultra‐broadband terahertz absorber based on graphene array periodic disks

机译:基于石墨烯阵列周期盘的超宽带太赫兹吸收器的电路建模

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摘要

The realization of broadband absorption in the terahertz spectra is of significant interest in advanced terahertz applications. In this work, a novel ultra-broadband absorber based on the periodic array of graphene disks and graphene continues sheet is proposed. A developed transmission line theory besides the analytical circuit model of graphene disks and graphene continues sheet are exploited to describe the absorber structure by its circuit model. By using three graphene layers and considering impedance matching concept, the normalized bandwidth of 90% absorption is extended up to 121% of the central frequency. Also, the dependence of the absorption spectra on the structure parameters is investigated and analyzed. Moreover, the performance of the device under possible fabrication errors is discussed. In pursuit of evaluating the efficiency, accuracy, and validity of the proposed method, full-wave numerical modeling is performed by the finite element method. The results show that the proposed circuit approach, in addition to having advantages in terms of computing time and the need for memory resource, is in a good agreement with the full-wave simulations. Furthermore, the structure of the absorber is relatively simple, and it can be manufactured by chemical vapor deposition techniques.
机译:太赫兹光谱中宽带吸收的实现在先进的太赫兹应用中引起了极大的兴趣。在这项工作中,提出了一种基于石墨烯圆盘和石墨烯连续片的周期性阵列的新型超宽带吸收器。除了石墨烯盘和石墨烯连续片的分析电路模型外,还开发了一种传输线理论,通过其电路模型来描述吸收体结构。通过使用三个石墨烯层并考虑阻抗匹配的概念,将90%吸收的归一化带宽扩展到中心频率的121%。此外,研究和分析了吸收光谱对结构参数的依赖性。此外,还讨论了在可能的制造误差下器件的性能。为了评估所提方法的效率,准确性和有效性,采用有限元方法进行了全波数值模拟。结果表明,所提出的电路方法除了在计算时间和对存储资源的需求方面均具有优势外,还与全波仿真具有良好的一致性。此外,吸收器的结构相对简单,并且可以通过化学气相沉积技术来制造。

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