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Spatial k-dispersion engineering of spoof surface plasmon polaritons for customized absorption

机译:欺骗性表面等离子体激元极化子的空间k分散工程以实现定制吸收

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摘要

Absorption of electromagnetic waves in a medium is generally manipulated by controlling the frequency dispersion of constitutive parameters. However, it is still challenging to gain the desired constitutive parameters for customized absorption over a broad frequency range. Here, by virtue of spoof surface plasmonic polaritons (SPPs), we demonstrate capabilities of the spatial k-dispersion engineering for producing the customized broadband absorption. Incident waves can be efficiently converted to the spoof SPPs by plasmonic arrays, and their propagation and/or absorption can be controlled by engineering the spatial dispersion of k-vector. Based on this feature, we show how such concept is employed to achieve broadband as well as frequency-selective broadband absorptions as examples. It is expected that the proposed concept can be extended to other manipulations of propagating electromagnetic waves over a broad frequency range.
机译:通常通过控制本构参数的频散来控制介质中电磁波的吸收。然而,获得期望的本构参数以在宽频率范围内进行定制吸收仍然具有挑战性。在这里,借助欺骗的表面等离激元极化子(SPPs),我们展示了空间k色散工程技术用于产生定制宽带吸收的能力。等离子体波可以将入射波有效地转换为欺骗性的SPP,并且可以通过设计k向量的空间色散来控制其传播和/或吸收。基于此功能,我们将举例说明如何使用这种概念来实现宽带以及频率选择性宽带吸收。可以预期,所提出的概念可以扩展到在较宽的频率范围内传播电磁波的其他操作。

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