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Effect of finite metallic grating size on Rayleigh anomaly-surface plasmon polariton resonances

机译:有限金属光栅尺寸对瑞利异常表面等离子体激元极化共振的影响

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摘要

Rayleigh anomalies (RAs) and surface plasmon polaritons (SPPs) on subwavelength metallic gratings play pivotal roles in many interesting phenomena such as extraordinary optical transmission. In this work, we present a theoretical analysis of the effect of finite metallic grating size on RA-SPP resonances based on the combination of rigorous coupled wave analysis and finite aperture diffraction. One-dimensional arrays of gold subwavelength gratings with different device sizes were fabricated and the optical transmission spectra were measured. As the grating size shrinks, the broadening of the RA-SPP resonances is predicted by the theoretical model. For the first order RA-SPP resonances, the results from this model are in good agreement with the spectra measured from the fabricated plasmonic gratings.
机译:亚波长金属光栅上的瑞利异常(RA)和表面等离振子极化子(SPP)在许多有趣的现象(例如非凡的光传输)中起着关键作用。在这项工作中,我们结合严格的耦合波分析和有限孔径衍射技术,对有限金属光栅尺寸对RA-SPP共振的影响进行了理论分析。制作了具有不同器件尺寸的金亚波长光栅的一维阵列,并测量了光透射光谱。随着光栅尺寸的缩小,理论模型可以预测RA-SPP共振的展宽。对于一阶RA-SPP共振,该模型的结果与从制造的等离激元光栅测得的光谱非常吻合。

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