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Six-band terahertz metamaterial absorber based on the combination of multiple-order responses of metallic patches in a dual-layer stacked resonance structure

机译:六层太赫兹超材料吸收体基于双层堆叠共振结构中金属斑块多阶响应的组合

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摘要

This paper reports on a numerical study of the six-band metamaterial absorber composed of two alternating stack of metallic-dielectric layers on top of a continuous metallic plane. Six obvious resonance peaks with high absorption performance (average larger than 99.37%) are realized. The first, third, fifth, and the second, fourth, sixth resonance absorption bands are attributed to the multiple-order responses (i.e., the 1-, 3- and 5-order responses) of the bottom- and top-layer of the structure, respectively, and thus the absorption mechanism of six-band absorber is due to the combination of two sets of the multiple-order resonances of these two layers. Besides, the size changes of the metallic layers have the ability to tune the frequencies of the six-band absorber. Employing the results, we also present a six-band polarization tunable absorber through varying the sizes of the structure in two orthogonal polarization directions. Moreover, nine-band terahertz absorber can be achieved by using a three-layer stacked structure. Simulation results indicate that the absorber possesses nine distinct resonance bands, and average absorptivities of them are larger than 94.03%. The six-band or nine-band absorbers obtained here have potential applications in many optoelectronic and engineering technology areas.
机译:本文报道了一个六波段超材料吸收器的数值研究,该吸收器由在连续金属平面顶部的两个交替的金属介电层堆叠组成。实现了六个明显的具有高吸收性能的共振峰(平均大于99.37%)。第一,第三,第五和第二,第四,第六共振吸收带可归因于其底层和顶层的多阶响应(即1、3和5阶响应)。因此,六频带吸收器的吸收机理是由于这两层的两组多阶共振的组合。此外,金属层的尺寸变化具有调谐六频带吸收器的频率的能力。利用结果,我们还通过在两个正交极化方向上改变结构的尺寸,提出了一种六波段极化可调吸收器。而且,通过使用三层堆叠结构可以实现九频带太赫兹吸收器。仿真结果表明,该吸收器具有九个不同的共振带,平均吸收率大于94.03%。此处获得的六波段或九波段吸收器在许多光电和工程技术领域具有潜在的应用。

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