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Polarization effects in light-tunable Fano resonance in metal-dielectric multilayer structures

机译:金属介电多层结构中光可调Fano共振中的极化效应

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摘要

A planar metal-dielectric multilayer structure containing a waveguide layer doped with azo-dye molecules exhibits a sharp Fano resonance that can be shifted by pump light irradiation owing to a photoinduced change of the refractive index of the waveguide layer by photoisomerization of the azo-dye molecules. Azo-dye-containing materials are polarization sensitive and the photoinduced shift of the Fano resonance is expected to depend on the pump polarization. Previous pump-probe attenuated-total-reflection measurements performed with a normal incidence of pump light exhibited intriguingly no dependence on the pump polarization. In this work, we extend our measurements to an oblique incidence, to optimize the overlap between the pump and probe polarizations, and we demonstrate a strong dependence on the pump polarization. To analyze the experimental results for both the normal and oblique pump conditions, we introduce phenomenological equations, based on the angular hole burning model of the photoisomerization of the azo-dye molecules. The equations allow us to describe the dependence of the refractive index changes in the waveguide layer on the pump angle and polarization. Using the equations, we could obtain good theoretical fits to the experimental data. The results of fitting suggest that the overlap between the pump and probe polarizations plays an important role in determining the amount of the photoinduced shift of the Fano resonance.
机译:包含掺杂有偶氮染料分子的波导层的平面金属介电多层结构表现出尖锐的Fano共振,由于偶氮染料的光异构化导致波导层的折射率发生光诱导变化,因此可以通过泵浦光辐照来偏移分子。含偶氮染料的材料对偏振敏感,并且预计Fano共振的光诱导位移取决于泵浦偏振。以前以泵浦光的正常入射量执行的泵浦探针衰减全反射测量结果显示,其对泵浦偏振的依赖性很强。在这项工作中,我们将测量范围扩展到倾斜入射,以优化泵浦和探头极化之间的重叠,并且证明了对泵浦极化的强烈依赖性。为了分析正常和倾斜泵浦条件下的实验结果,我们基于偶氮染料分子的光异构化的角孔燃烧模型,引入了现象学方程。这些方程式使我们能够描述波导层中折射率变化对泵浦角和偏振的依赖性。使用这些方程,我们可以获得与实验数据良好的理论拟合。拟合结果表明,泵浦极化和探针极化之间的重叠在确定Fano共振的光致位移量中起着重要作用。

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  • 来源
    《Physical review. B, Condensed Matter And Materals Physics》 |2017年第16期|165402.1-165402.8|共8页
  • 作者单位

    Optics and Photonics Center, Moroccan Foundation for Science, Innovation and Research (MAScIR), Rabat 10100, Morocco,Graduate School of Engineering, Kobe University, Kobe 657-8501, Japan;

    Optics and Photonics Center, Moroccan Foundation for Science, Innovation and Research (MAScIR), Rabat 10100, Morocco;

    Optics and Photonics Center, Moroccan Foundation for Science, Innovation and Research (MAScIR), Rabat 10100, Morocco;

    Optics and Photonics Center, Moroccan Foundation for Science, Innovation and Research (MAScIR), Rabat 10100, Morocco,Graduate School of Engineering, Osaka University, Suita 565-0871, Japan,Faculty of Sciences, University Mohamed V, Rabat 10010, Morocco;

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