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Plasmonic absorbing structure using horizontal bent-wire array for low-frequency absorption enhancement

机译:具有水平弯曲线阵列的等离子体吸收结构,用于低频吸收增强

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摘要

In this paper, a miniaturized scheme of plasmonic absorbing structure (PAS) is proposed which bends straight wire array into horizontal bent-wire array, contributing to outstanding low-frequency absorption enhancement. Our investigation shows that the interval of adjacent absorptions in spectrum can be efficiently reduced when the resonator of straight wire is developed into horizontal bent-wire in metamaterial absorber (MA). On illumination, an improved PAS consisting of horizontal bent-wire array and vertical wire array is proposed which can make full use of dispersion engineering for broadband absorption enhancement by virtue of spoof surface plasmon polariton (SSPP). Simulation and experimental measurement show that the proposed improved PAS can achieve broadband absorption with the efficiency more than 90% in the frequency band of 5.3-29.0 GHz, which is 40.8% lower in figure of merit compared with the original PAS. Our strategy provides an effective way to enhance the low-frequency absorption in a wider frequency band with no increase of total thickness, and we expect a wide range of applications to emerge from the proposed scheme.
机译:在本文中,提出了一种额定质位吸收结构(PAS)的小型化方案,其将直线阵列弯曲成水平弯曲线阵列,有助于出色的低频吸收增强。我们的研究表明,当直线的谐振器开发到超材料吸收器(MA)中的水平弯曲线上,可以有效地降低频谱中相邻吸收的间隔。在照明中,提出了一种由水平弯曲线阵列和垂直线阵列组成的改进的PA,其可以通过欺骗表面等离子体(SSPP)来充分利用宽带吸收增强的分散工程。仿真和实验测量表明,所提出的改进的PA可以在5.3-29.0GHz的频带中达到90%以上的效率达到宽带吸收,与原始PAS相比,比较率低40.8%。我们的策略提供了一种有效的方法来提高更宽的频段中的低频吸收,没有总厚度的增加,我们预计从所提出的方案中出现了广泛的应用。

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