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Investigation of fade-out mechanism of resonance modes in optical transmission using stacked metallic sub-wavelength slit arrays

机译:使用堆叠的金属亚波长缝隙阵列的光传输中共振模式的衰减机制研究

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摘要

We investigated the behavior of optical transmission modes in stacked systems composed of metallic sub-wavelength slit-array plates separated by air gaps using simulations based on the finite-difference time-domain method. In double- and triple-stacked structures without a lateral displacement between the plates, the Fabry-Perot-like waveguide resonance modes are classified according to whether the resonance frequencies depend strongly on the air-gap spacing. By introducing a lateral displacement of the plates for both double- and triple-stacked structures, we found that the modes of one category, which were barely affected by changes in the air-gap spacing without the displacement, vary their resonance frequencies considerably when the optical paths are extremely narrow within the air-gap regions and, then, rapidly but continuously attenuate through mixing with the modes of the other category. We demonstrate that this marked behavior results from a manifest distortion in the spatial distribution of the electromagnetic fields for the modes of the first category, induced by the boundary condition at the slit ends changing from open-open to open-closed. Although all resonance modes in the two-tier system disappear continuously through cooperative mode mixing, some modes remain in the three-tier system that vanishes independently and discontinuously as the optical paths become blocked. These findings are indispensable for practical applications and for gaining a deeper understanding of this type of metamaterial.
机译:我们使用基于有限差分时域方法的模拟研究了由气隙分隔的由金属亚波长缝隙阵列板组成的堆叠系统中光传输模式的行为。在板之间没有侧向位移的双叠层和三叠层结构中,根据谐振频率是否强烈取决于气隙间距来分类法布里-珀罗式波导谐振模式。通过对双叠层和三叠层结构引入板的横向位移,我们发现,一类模态几乎不受气隙间距变化的影响,而没有位移,当它们的共振频率发生很大变化时,在气隙区域内,光路极其狭窄,然后通过与其他类别的模式混合而迅速但连续衰减。我们证明,这种明显的行为是由第一类模式的电磁场在空间分布中的明显畸变引起的,该畸变是由狭缝末端处的边界条件从开-开变为开-闭引起的。尽管两层系统中的所有共振模式都通过协作模式混合而连续消失,但某些模式仍保留在三层系统中,随着光路被阻塞,这些模式将独立且不连续地消失。这些发现对于实际应用以及对这种超材料的深入理解都是必不可少的。

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  • 来源
    《Journal of Applied Physics》 |2014年第24期|243104.1-243104.7|共7页
  • 作者单位

    Faculty of Computer Science and System Engineering, Okayama Prefectural University, Soja, Okayama 719-1197, Japan;

    Faculty of Computer Science and System Engineering, Okayama Prefectural University, Soja, Okayama 719-1197, Japan;

    Institute of Laser Engineering, Osaka University, Suita, Osaka 565-0871, Japan;

    Faculty of Computer Science and System Engineering, Okayama Prefectural University, Soja, Okayama 719-1197, Japan;

    Institute of Laser Engineering, Osaka University, Suita, Osaka 565-0871, Japan;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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