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Multi-Hole Core Photonic Crystal Fiber Guiding Light in Subwavelength Air Holes

机译:亚波长气孔中的多孔芯光子晶体光纤导光

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摘要

We present a novel multi-hole core photonic crystal fiber for guiding and confining light in subwavelength-diameter low-refractive-index air holes of core, even when light is guided based on total internal reflection. The low-loss, broadband and single-mode guiding properties of the fiber are studied. The propagation mechanism in subwavelength and low-refractive-index holes is analyzed by evanescent wave coupling. Light confinement and enhancement are caused by large discontinuity of the electric field at dielectric interfaces. Multiple subwavelength air holes in the core can guide light together, coupling and coherent with each other. Arrays of air holes in the core can be used as a means of patterning light on a submicrometer regime. The high light intensity in multiple long holes enables a variety of applications in nonlinear light management, optical modulation, and gas sensing.
机译:我们提出了一种新颖的多孔芯光子晶体光纤,即使在基于全内反射来导光的情况下,也可以在芯的亚波长直径低折射率气孔中引导和限制光。研究了光纤的低损耗,宽带和单模导光特性。通过van逝波耦合分析了亚波长和低折射率孔中的传播机理。光的限制和增强是由于介电界面处电场的大不连续性引起的。纤芯中的多个亚波长气孔可以将光引导在一起,彼此耦合并相干。芯中的气孔阵列可以用作在亚微米范围内对光进行构图的手段。多个长孔中的高光强度可在非线性光管理,光学调制和气体感测中实现多种应用。

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