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Inversion Method Characterization of Graphene-Based Coordination Absorbers Incorporating Periodically Patterned Metal Ring Metasurfaces

机译:包含周期性图案化金属环超表面的基于石墨烯的配位吸收剂的反演方法表征

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摘要

In this paper, we propose a tunable coordinated multi-band absorber that combines graphene with metal–dielectric–metal structures for the realization of multiple toward perfect absorption. The parametric inversion method is used to extract the equivalent impedance and explain the phenomena of multiple-peak absorption. With the change of the Fermi level, equivalent impedances were extracted, and the peculiarities of the individual multiple absorption peaks to change were determined. By changing the structure parameters of gold rings, we obtain either multiple narrow-band absorption peaks or a broadband absorption peak, with the bandwidth of 0.8 μm where the absorptance is near 100%. Therefore, our results provide new insights into the development of tunable multi-band absorbers and broadband absorbers that can be applied to terahertz imaging in high-performance coordinate sensors and other promising optoelectronic devices.
机译:在本文中,我们提出了一种可调谐的协调多频带吸收器,该吸收器将石墨烯与金属-电介质-金属结构相结合,以实现向理想吸收的多重吸收。参数反演方法用于提取等效阻抗并解释多峰吸收现象。随着费米能级的变化,提取了等效阻抗,并确定了多个吸收峰的特征。通过改变金环的结构参数,我们可以得到多个窄带吸收峰或宽带吸收峰,其带宽为0.8μm,吸收率接近100%。因此,我们的结果为可调谐多频带吸收器和宽带吸收器的发展提供了新的见识,该可调谐多频带吸收器和宽带吸收器可用于高性能坐标传感器和其他有前景的光电设备中的太赫兹成像。

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