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Making structured metals transparent for ultrabroadband electromagnetic waves and acoustic waves

机译:使结构化金属对超宽带电磁波和声波透明

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摘要

In this review, we present our recent work on making structured metals transparent for broadband electromagnetic waves and acoustic waves via excitation of surface waves. First, we theoretically show that one-dimensional metallic gratings can become transparent and completely antireflective for extremely broadband electromagnetic waves by relying on surface plasmons or spoof surface plasmons. Second, we experimentally demonstrate that metallic gratings with narrow slits are highly transparent for broadband terahertz waves at oblique incidence and high transmission efficiency is insensitive to the metal thickness. Further, we significantly develop oblique metal gratings transparent for broadband electromagnetic waves (including optical waves and terahertz ones) under normal incidence. In the third, we find the principles of broadband transparency for structured metals can be extended from one-dimensional metallic gratings to two-dimensional cases. Moreover, similar phenomena are found in sonic artificially metallic structures, which present the transparency for broadband acoustic waves. These investigations provide guidelines to develop many novel materials and devices, such as transparent conducting panels, antireflective solar cells, and other broadband metamaterials and stealth technologies. (C) 2015 Elsevier Inc. All rights reserved.
机译:在这篇综述中,我们介绍了我们最近的工作,通过激发表面波,使结构化金属对宽带电磁波和声波透明。首先,我们从理论上证明一维金属光栅可以通过依赖于表面等离激元或欺骗性表面等离激元而变得对极宽带电磁波透明且完全抗反射。第二,我们通过实验证明具有窄缝的金属光栅对于斜入射时的宽带太赫兹波是高度透明的,并且高传输效率对金属厚度不敏感。此外,我们在垂直入射下显着开发了对宽带电磁波(包括光波和太赫兹波)透明的倾斜金属光栅。在第三篇中,我们发现结构化金属的宽带透明性原理可以从一维金属光栅扩展到二维情况。此外,在声波人造金属结构中发现了类似现象,为宽带声波提供了透明性。这些研究为开发许多新颖的材料和设备提供了指导,例如透明导电板,抗反射太阳能电池以及其他宽带超材料和隐形技术。 (C)2015 Elsevier Inc.保留所有权利。

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