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Multi-band near-perfect absorption via the resonance excitation of dark meta-molecules

机译:通过暗亚分子的共振激发实现多波段近乎完美的吸收

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摘要

We numerically study a multi-band absorption based on electromagnetic-induced-transparency effect of metamaterial. By exploiting the coupling between bright and dark plasmonic modes of cut-wire triplet, which consists of a vertical wire and two horizontal wires, a dual-band absorption is realized at 243 and 266 THz. Then, the absorber structure is improved by adding two new horizontal wires which play role as second dark meta-molecules. Due to the dark-dark coupling, another absorption band arises so that a triple-band absorption is created at 240, 250 and 264 THz. The role of interaction between dark meta-molecules in triple-band absorption is investigated, revealing a specific non-monotonic characteristic of the second absorption peak. Finally, the influence of incident angle of EM wave on multi-band absorbers shows that the absorption of lowest frequency peak is robust while those of higher frequency peaks are strongly weaken with increasing of the incident angle. (C) 2015 Elsevier B.V. All rights reserved.
机译:我们基于超材料的电磁感应透明效应,对多频带吸收进行了数值研究。通过利用由垂直线和两条水平线组成的切割线三重态的亮和暗等离激元模式之间的耦合,可以在243和266 THz处实现双频带吸收。然后,通过添加两个新的水平线来改善吸收体结构,这两个水平线起着第二个深色亚分子的作用。由于暗-暗耦合,出现了另一个吸收带,因此在240、250和264 THz处产生了三带吸收。研究了暗分子之间相互作用在三重吸收中的作用,揭示了第二个吸收峰的特定非单调特性。最后,电磁波的入射角对多频带吸收器的影响表明,随着入射角的增加,最低频率峰值的吸收很强,而较高频率峰值的吸收则大大减弱。 (C)2015 Elsevier B.V.保留所有权利。

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