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Extraordinary midinfrared transmission of rectangular coaxial nanoaperture arrays

机译:矩形同轴纳米孔径阵列的非常规中红外透射

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摘要

We analyze the extraordinary transmission effect in the periodic and random nanoaperture arrays in optically thick metal films. Experimental studies are combined with simulations to show that extraordinary transmission effect at midinfrared wavelengths is enhanced when the decaying waveguide mode of a single nanoaperture couples through the collective surface plasmon excitations created through periodicity. Transmission characteristics of the individual nanoapertures are investigated by randomizing the apertures. By comparing rectangular to coaxial rectangular nanoapertures, both of which support TE_(01)-like decaying waveguide modes, we study the effect of nanoaperture geometry on the efficiency of the transmission.
机译:我们分析了光学厚金属膜中周期性和随机纳米孔阵列中的非凡传输效果。实验研究与模拟相结合表明,当单个纳米孔的衰减波导模式通过周期性产生的集体表面等离子体激元耦合时,在中红外波长的非凡传输效果会增强。通过随机化孔径研究各个纳米孔的透射特性。通过比较矩形和同轴矩形纳米孔,它们均支持类似TE_(01)的衰减波导模式,我们研究了纳米孔几何形状对传输效率的影响。

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