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Classifying the transmission resonances of a subwavelength aperture within a thin metallic film by breaking the symmetry

机译:通过破坏对称性对金属薄膜内亚波长孔径的透射共振进行分类

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摘要

Here by introducing an I-shape structure to break the symmetry of a thin metallic film, the contributions of Fabry-Perot (FP) resonance-like modes and surface plasmon polariton (SPP) resonance-like are determined. The finite difference-time domain (FDTD) simulation is utilized to provide a clear picture of the electromagnetic field distribution and transmission profile. The FP matrix method is employed to specify the contribution of FP resonance. Some of the predicted resonances of the FP matrix method coincide with the simulation result which is labeled as FP resonance-like modes. The remaining resonance modes in transmission profile are considered as SPP resonance-like modes. Our results provide explicit evidence that both FP resonator modes and SPP resonance are responsible for extraordinary optical transmission (EOT) through a subwavelength aperture.
机译:在这里,通过引入一个I形结构来破坏金属薄膜的对称性,可以确定法布里-珀罗(FP)共振模和表面等离振子极化(SPP)共振的贡献。时差有限时域(FDTD)仿真用于提供电磁场分布和传输曲线的清晰图片。 FP矩阵法用于指定FP共振的贡献。 FP矩阵方法的某些预测共振与标记为FP共振模式的模拟结果一致。传输曲线中其余的共振模式被认为是SPP共振模式。我们的结果提供了明确的证据,即FP谐振器模式和SPP谐振都与通过亚波长孔径的非凡光学传输(EOT)有关。

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