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首页> 外文期刊>Advanced Optical Materials >Self-Assembled, 10 nm-Tailored, Near Infrared Plasmonic Metasurface Acting as Broadband Omnidirectional Polarizing Mirror
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Self-Assembled, 10 nm-Tailored, Near Infrared Plasmonic Metasurface Acting as Broadband Omnidirectional Polarizing Mirror

机译:自组装,10nm定制,近红外等离子体元曲面作用为宽带全向偏振镜

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摘要

Plasmonic metasurfaces tailored at the few-nanometers scale and fabricated by high-throughput lithography-free methods are needed to efficiently produce optical components with optimal performance and small footprint. Herein, the design of such metasurfaces and their fabrication over cm(2)areas by self-assembly are reported. They present an optical cavity structure, in which a 2D array of parallel Au nanorods is coupled to a metal mirror through a thin spacer. The nanorods present a quasi-monodisperse approximate to 10 nm diameter and separation, and a broad polydisperse length distribution. These remarkable nanostructural features, combining periodicity in one direction with randomness in another, endow the nanorod array with unconventional plasmonic and anisotropic effective optical properties. Thanks to these properties, for light polarized along the nanorods, the metasurface displays strong destructive optical interference and thus near-perfect absorption over a broad range of angles of incidence and of wavelengths in the near infrared. In contrast, for light polarized perpendicular to the nanorods, no such interference occurs and thus the metasurface behaves as a metal mirror. In sum, the metasurface can be used as broadband omnidirectional polarizing mirror, an original thin and monolithic optical component merging the functionalities of a metal mirror and of a wire-grid polarizer.
机译:需要在几纳米刻度上定制的等离子体元件,并通过高通量光刻的方法制造,以有效生产具有最佳性能和小占地面积的光学元件。这里,报道了这种元件的这种元件的设计及其在自组装上通过CM(2)区域的制造。它们呈现一种光学腔结构,其中平行Au纳米棒的2D阵列通过薄的间隔物连接到金属镜。纳米棒呈现近似近10nm直径和分离,以及广泛的多分散长度分布。这些显着的纳米结构特征,在一个方向上与另一个方向的周期性相结合,具有非常规等离子体和各向异性有效光学性能的纳米棒阵列。由于这些性质,对于沿纳米棒极化的光,所以元表面显示出强烈的破坏性光学干扰,从而在近红外线的广泛角度和波长范围内的近乎完美的吸收。相反,对于垂直于纳米棒的光偏振,不会发生这种干涉,因此金属镜的表现为金属镜。总之,元表面可用作宽带全向偏振镜,原始薄型和单片光学元件合并金属镜和线栅偏振器的功能。

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