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Characterization of three-dimensional field distribution of bowtie aperture using quasi-spherical waves and surface plasmon polaritons

机译:准球形波和表面等离子体极性弓形孔径三维场分布的特征

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We present an analytical formula to predict the three-dimensional field distribution of a nanoscale bowtie aperture using quasi-spherical waves (QSWs) and surface plasmon polaritons, which are excited by the fundamental waveguide mode and local plasmons of the aperture, respectively. Assuming two separate bowtie apertures in a metal film, we analysed the decay characteristics of QSWs using a finite difference time-domain method. To verify the formula, we recorded the spot patterns of the bowtie aperture on a photoresist film using various exposure times, and fit the patterns to the analytical formula in terms of the width and depth of the patterns. In addition, it was found that the formula successfully represented the dipole characteristics of the spot patterns, which were in agreement with the surface geometry, with a root-mean-square error of 9.4%. We expect that our theoretical formula will extend the potential applications of nanoscale bowtie apertures to plasmonic device fabrication, three-dimensional plasmonic lithography, and other technologies.
机译:我们介绍了一种分析公式,以预测使用准球形波(QSW)和表面等离子体极性官部的纳米级弓形孔的三维场分布,其分别由孔的基本波导模式和局部等离子体激发。假设在金属膜中的两个单独的蝴蝶结孔,我们使用有限差分时间域方法分析了QSW的衰减特性。为了验证公式,我们使用各种曝光时间记录了光致抗蚀剂膜上的弓形孔的点图案,并根据图案的宽度和深度拟合到分析公式的图案。此外,发现该公式成功地表示点斑点图案的偶极特性,其与表面几何形状一致,具有9.4%的根均方误差。我们预计我们的理论公式将延长纳米镜头弓形孔的潜在应用,以使三维等离子体光刻和其他技术。

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