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Role of shape and localized resonances in extraordinary transmission through periodic arrays of subwavelength holes: Experiment and theory

机译:形状和局部共振在通过亚波长孔的周期性阵列的非凡传输中的作用:实验和理论

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The effect of the aspect ratio of rectangular holes on the transmissivity of periodic arrays of subwavelength holes in optically thick metal films is investigated. The transmissivity is found to be highly dependent on the aspect ratio of the holes. Moreover, the wavelengths of maximum transmissivity show a monotonous shift as a function of the aspect ratio of the holes. We attribute the enhanced transmission of the periodic arrays to an interplay of surface plasmons at the surface of the metal and shape resonances (also known as localized modes) inside the holes. The importance of the shape resonances was confirmed by a comparison of transmission through periodic hole arrays and through randomly distributed holes. Dispersion curves of periodic and random hole arrays confirmed the existence of shape resonance as well. We suggest that the localized modes effectively act as waveguides and increase the coupling efficiency of surface plasmons between both sides of the film, which results in a higher transmissivity. The shift of the maxima of the transmissivity may in part be explained by the spectral position of the localized modes in the individual holes. Finally measurements on similar patterns in Ni and Ag revealed that the occurrence of shape resonances is independent of the material of the film.
机译:研究了矩形孔的长宽比对光学厚金属膜中亚波长孔周期阵列的透射率的影响。发现透射率高度依赖于孔的纵横比。此外,最大透射率的波长根据孔的长宽比显示出单调的偏移。我们将周期性阵列的增强透射归因于金属表面的表面等离激元相互作用以及孔内的形状共振(也称为局部模式)。通过比较通过周期性孔阵列和通过随机分布的孔的传输,可以确认形状共振的重要性。周期性和随机孔阵列的色散曲线也证实了形状共振的存在。我们建议,局部模式有效地充当波导,并提高薄膜两侧之间的表面等离子体激元的耦合效率,从而导致更高的透射率。透射率最大值的移动可以部分地由各个孔中的局部模式的光谱位置来解释。最后,对镍和银中相似图案的测量表明,形状共振的发生与膜的材料无关。

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