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Plasmonic Bragg Reflectors: Optimization and Application to Isolation

机译:等离子布拉格反射器:优化及其在隔离中的应用

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摘要

Plasmonic Bragg reflectors (PBRs) enhance extraordinary optical transmission (EOT) through arrays of subwavelength apertures. Here, we characterize PBRs with variable line depth, number of holes in the array, and number of lines. The experimentally determined optimum depth of 45 nm and the EOT enhancement saturation for only three PBR lines is discussed in terms of the surface plasmon polariton skin depth and scattering losses. We demonstrate the implementation of PBRs to effectively isolate two arrays of nanoholes, and to suppress the interaction between adjacent periodic array structures. As an application of this isolation, PBRs are used to isolate elements of multiple arrays in order to reduce interference, and thereby provide a more uniform spectral output from all regions of the superarray.
机译:等离子体布拉格反射器(PBR)通过亚波长孔径阵列增强了非凡的光学传输(EOT)。在这里,我们用可变的线深,阵列中的孔数和线数来表征PBR。根据表面等离激元极化趋肤深度和散射损耗,讨论了实验确定的45 nm最佳深度和EOT增强饱和度仅适用于三条PBR线。我们演示了PBR的实现,以有效隔离两个纳米孔阵列,并抑制相邻的周期性阵列结构之间的相互作用。作为这种隔离的一种应用,PBR用于隔离多个阵列的元素,以减少干扰,从而从超级阵列的所有区域提供更均匀的光谱输出。

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