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首页> 外文期刊>Optics Letters >Broadband and energy-concentrating terahertz coherent perfect absorber based on a self-complementary metasurface
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Broadband and energy-concentrating terahertz coherent perfect absorber based on a self-complementary metasurface

机译:基于自互补超表面的宽带和能量集中的太赫兹相干完美吸收体

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摘要

We demonstrate that a self-complementary checkerboard-like metasurface works as a broadband coherent perfect absorber (CPA) when symmetrically illuminated by two counter-propagating incident waves. A theoretical analysis based on wave interference and the results of numerical simulations of the proposed metasurface are provided. In addition, we experimentally demonstrate the proposed CPA in the terahertz regime by using a time-domain spectroscopy technique. We observe that the metasurface can work as a CPA below its lowest diffraction frequency. The size of the absorptive areas of the proposed CPA can be much smaller than the incident wavelength. Unlike conventional CPAs, the presented one simultaneously achieves the broadband operation and energy concentration of electromagnetic waves at the deep-subwavelength scale. (C) 2016 Optical Society of America
机译:我们证明了当两个反向传播的入射波对称照明时,自互补棋盘状超颖表面可作为宽带相干完美吸收体(CPA)。提供了基于波干扰的理论分析以及拟建超颖表面的数值模拟结果。此外,我们通过使用时域光谱技术,以太赫兹方式实验性地证明了拟议的CPA。我们观察到,超颖表面在其最低衍射频率以下可以作为CPA使用。提议的CPA的吸收区域的大小可以比入射波长小得多。与传统的CPA不同,本文提出的CPA在深亚波长范围内同时实现了宽带操作和电磁波的能量集中。 (C)2016美国眼镜学会

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