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Excitation and optimization modeling of surface plasmon polaritons in a concentric circular metallic grating Film

机译:同心圆金属光栅薄膜中表面等离激元极化子的激发与优化模型

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摘要

Interaction behavior between surface plasmon polaritons (SPPs) and Hankel-distributed diffracted waves (DWs) on a silver concentric circular grating film is studied using a rigorous coupled-wave technique for circular structure. It is shown that the numerical technique reveals the excitation characteristics of SPPs in the circular metal grating as well as provides an accurate calculation of SPP intensities for further optimization designs. Results show that the SPPs can be excited by various DWs through the control of wavelength and angle of the incident light. The most efficient excitation of SPPs from this circular metal grating structure can be obtained from the +1~(st)-order DW under a normal incidence with wavelength close to the grating period, and the optimal thickness and duty cycle of the grating are found to be 370 and 0.5 nm, respectively. It is shown that the optimized intensity of SPPs excited from circular metal grating can be higher than that from strip metal grating by over one order of magnitude.
机译:利用严格的耦合波技术,研究了圆形等离激元在银同心圆光栅膜上的表面等离子体激元(SPPs)与汉克分布衍射波(DWs)之间的相互作用。结果表明,数值技术揭示了圆形金属光栅中SPP的激发特性,并为进一步优化设计提供了SPP强度的准确计算。结果表明,通过控制入射光的波长和角度,各种DW都可以激发SPP。圆形金属光栅结构对SPP的最有效激发可以在垂直入射且波长接近光栅周期的情况下,由+ 1〜(st)级DW获得,并找到了最佳的光栅厚度和占空比分别为370和0.5 nm。结果表明,圆形金属光栅激发的SPP的优化强度可以比带状金属光栅激发的SPP的优化强度高一个数量级。

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