Design and fabrication of bilayer metallic nanowire polarizers and color filters based on surface plasmon and waveguide mode resonances

Zhicheng Ye, Jun Zheng, Chenchen Zhang, Shuo Sun
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Abstract

Optical responses in Bi-layer metallic nanowire grating are investigated. There are two kinds of Surface Plasmon resonances: lateral propagating Surface Plasmon waveguide modes excited by the diffraction of the grating which lead to dips in transmission; Surface Plasmon resonance between the slits of the grating, which leads to high extinction ration of TM to TE transmission. With simultaneous resonances, a compacted device of integrated color filter and polarizer can be achieved. In order to improve the transmission of TM light, an undercut structure is proposed. The mechanism of the enhancement is analyzed. Bi-layer metallic nanowire gratings are fabricated by laser interference lithography and subsequent E-beam deposition. The measured transmission and reflection spectra confirmed the theoretical and numerical simulations. The results will have wide potential applications in Displays, Optical communication, and integrated Optics.
基于表面等离子体和波导模式共振的双层金属纳米线偏振器和滤色器的设计与制造
研究了双层金属纳米线光栅的光学响应。表面等离子体共振有两种类型:由光栅衍射激发的横向传播表面等离子体波导模式导致透射率下降;光栅狭缝间的表面等离子体共振,使得TM对TE传输具有较高的消光比。同时谐振,可以实现一个紧凑的集成彩色滤光片和偏振器的装置。为了提高TM光的透射率,提出了一种凹边结构。分析了其增强机理。采用激光干涉光刻和电子束沉积的方法制备了双层金属纳米线光栅。实测的透射和反射光谱证实了理论和数值模拟的结果。研究结果在显示、光通信、集成光学等领域具有广泛的应用前景。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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