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Bending loss of elliptical-hole core circular-hole holey fibers bent in arbitrary bending directions

机译:在任意弯曲方向弯曲的椭圆孔芯圆孔多孔纤维的弯曲损失

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摘要

A holey fiber having a core with an elliptical-hole lattice structure, which is referred to as an elliptical-hole core circular-hole holey fiber (EC-CHF), can be easily designed as a single-polarization fiber by using the fundamental space-filling modes of the core and cladding lattices. However, because the guided mode in an EC-CHF has a polarization that arises from the large geometric anisotropy of the core lattice, the influence of the bending direction on the bending loss is a crucial issue for the practical implementation of EC-CHFs. Here, the bending losses of an EC-CHF bent in arbitrary angular orientations with respect to the core cross section are calculated numerically using the equivalent anisotropic step-index circular fiber model for a real EC-CHF, and the influence of the bending direction of the fiber on the bending loss is discussed.
机译:通过使用基本空间,可以容易地将被称为椭圆孔芯圆孔多孔光纤(EC-CHF)的具有椭圆孔格结构的芯的多孔光纤设计为单偏振光纤。芯和包层晶格的填充方式。但是,由于EC-CHF中的引导模式具有由核心晶格的较大几何各向异性引起的极化,因此弯曲方向对弯曲损耗的影响对于EC-CHF的实际实现至关重要。在此,对于实际EC-CHF,使用等效各向异性阶跃折射率圆形纤维模型,通过数值计算相对于纤芯横截面以任意角度取向弯曲的EC-CHF的弯曲损耗,并计算弯曲方向的影响。讨论了纤维对弯曲损耗的影响。

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