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Transmission Enhancement of Light through a Metallic Nano-slit with Periodic Metallic Nano-strips

机译:通过具有周期性金属纳米带的金属纳米缝增强光的透射

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摘要

The study of the transmission properties of subwavelength apertures has become a very active area of research in electromagnetism. It is generally accepted that structuring the input surface of the metal film by periodic corrugations is very effective in the process of transmission enhancement through single apertures. Here instead of periodic corrugations, we propose to use periodic nano-strips placed before the input surface of the metal film to enhance the transmission of light through a nano-slit milled in the film. Influences of the structural parameters of periodic nano-strips on the transmission enhancement are investigated. The transmission efficiency through a 25nm-width silver nano-slit can be boosted to be η = 164 when six pairs of nano-strips are placed 50nm distant away from the incident surface of the silver film at λ_0 = 1 μm, which is originally η = 7.8 without any strips. This indicates that a large part of the incident light can be transformed into the localized guided wave with strong intensity, and then more light can flow through the nano-slit. We emphasize that periodic nano-strips can serve as an efficient receiving antenna to harvest light into the nano-slit.
机译:亚波长孔的透射特性的研究已经成为电磁学研究的一个非常活跃的领域。通常认为,通过周期性的波纹来构造金属膜的输入表面在通过单个孔的透射增强过程中是非常有效的。在这里,我们建议使用周期性的纳米带代替周期性的波纹,该周期性的纳米带位于金属膜的输入表面之前,以增强光通过膜中研磨的纳米缝的透射率。研究了周期性纳米带的结构参数对传输增强的影响。当将六对纳米带放置在距银膜入射表面50nm处的λ_0= 1μm处(最初为η)时,通过25nm宽度的银纳米缝隙的传输效率可以提高到η= 164。 = 7.8,无任何条带。这表明大部分入射光可以被转换成具有强强度的局部导波,然后更多的光可以流过纳米缝隙。我们强调,周期性纳米带可以用作有效的接收天线,以将光收集到纳米带中。

著录项

  • 来源
    《Metamaterials IV》|2009年|73530S.1-73530S.8|共8页
  • 会议地点 Prague(CZ)
  • 作者单位

    State Key Laboratory for Modern Optical Instrumentation, Center for Optical and Electromagnetic Research, Zhejiang University, Hangzhou 310058, China Joint Research Center of Photonics of the Royal Institute of Technology (Sweden) and Zhejiang University;

    Joint Research Center of Photonics of the Royal Institute of Technology (Sweden) and Zhejiang University;

    Department of Electrical and Computer Engineering, Kumamoto University, Japan;

    Joint Research Center of Photonics of the Royal Institute of Technology (Sweden) and Zhejiang University;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    extraordinary optical transmission; surface plasmon polaritons; nano-slit; nano-strip; plasmonic waveguide; fabry-perot cavity;

    机译:非凡的光传输;表面等离激元极化子;纳米缝纳米带等离子体波导法罗珀腔;

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