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Plasmonic effects in near-field optical transmission enhancement through a single bowtie-shaped aperture

机译:通过单个领结形光圈增强近场光传输中的等离子效应

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摘要

In this paper, the enhanced optical transmission through a special type of aperture of a bowtie shape is investigated through near-field imaging and finite-difference numerical analysis. Under linear polarizations in two orthogonal directions, the optical near fields of the bowtie aperture and comparable square and rectangular apertures made in gold and chromium thin films are measured and compared. The bowtie aperture is able to provide a nanometer-sized optical spot when the incident light is polarized across the bowtie gap and delivers a considerable amount of light. Localized surface plasmons are clearly observed in the near-field images for both bowtie and rectangular apertures in gold, but invisible in chromium. Finite-difference time-domain calculations reveal that, depending on the polarization of the incident light, the unique optical properties of the bowtie aperture are a result of either the optical waveguide and the coupled surface plasmon polariton modes existing in the bowtie gap or the coupling between the two open arms of the bowtie aperture.
机译:在本文中,通过近场成像和有限差分数值分析,研究了通过特殊类型的领结形孔增强的光传输。在两个正交方向上的线性偏振下,测量并比较由金和铬薄膜制成的领结孔以及类似的方形和矩形孔的光学近场。当入射光穿过领结间隙偏振时,领结孔能够提供纳米级的光斑,并发出大量光。在金的领结和矩形孔的近场图像中可以清楚地观察到局部表面等离激元,但在铬中则看不见。时域有限差分计算表明,取决于入射光的偏振态,领结孔径的独特光学特性是光波导和领结间隙或耦合中存在的耦合表面等离振子极化模式的结果。在领结孔的两个张开臂之间。

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