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Excitation of epsilon-near-zero resonance in ultra-thin indium tin oxide shell embedded nanostructured optical fiber

机译:超薄铟锡氧化物壳纳米结构光纤中ε接近零共振的激发

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摘要

We report a novel optical waveguide design of a hollow step index fiber modified with a thin layer of indium tin oxide (ITO). We show an excitation of highly confined waveguide mode in the proposed fiber near the wavelength where permittivity of ITO approaches zero. Due to the high field confinement within thin ITO shell inside the fiber, the epsilon-near-zero (ENZ) mode can be characterized by a peak in modal loss of the hybrid waveguide. Our results show that such in-fiber excitation of ENZ mode is due to the coupling of the guided core mode to the thin-film ENZ mode. We also show that the phase matching wavelength, where the coupling takes place, varies depending on the refractive index of the constituents inside the central bore of the fiber. These ENZ nanostructured optical fibers have many potential applications, for example, in ENZ nonlinear and magneto-optics, as in-fiber wavelength-dependent filters, and as subwavelength fluid channel for optical and bio-photonic sensing.
机译:我们报告了一种新型的光波导设计,它是用氧化铟锡(ITO)薄层改性的空心台阶折射率纤维。我们显示了在ITO介电常数接近零的波长附近的拟议光纤中的高约束波导模式的激发。由于在光纤内部的薄ITO壳内的高场限制,ε接近零(ENZ)模式的特征在于混合波导的模态损耗峰值。我们的结果表明,这种ENZ模式的光纤内激励是由于引导纤芯模式与薄膜ENZ模式的耦合所致。我们还表明,发生耦合的相位匹配波长取决于光纤中心孔内部成分的折射率而变化。这些ENZ纳米结构光纤具有许多潜在的应用,例如,在ENZ非线性和磁光中,作为光纤中依赖于波长的滤波器,以及作为用于光学和生物光子传感的亚波长流体通道。

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