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首页> 外文期刊>Fiber and Integrated Optics >Designing Ultra-High-Birefringent Photonic Crystal Fibers with Circular Air Holes in the Cladding
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Designing Ultra-High-Birefringent Photonic Crystal Fibers with Circular Air Holes in the Cladding

机译:设计包层中带有圆形气孔的超高双折射光子晶体光纤

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摘要

This article reports a new air-silica photonic crystal fiber structure of high birefringence (~10~(-2)). The birefringence is due to large axial anisotropy introduced in the fiber geometry by a preferred arrangement of circular air holes of different sizes in the cladding structure along orthogonal directions. A series study of birefringence and cut-off properties of the fiber that leads to optimization of geometrical parameters toward maximized birefringence achievable in the single-mode regime through this micro-structure is provided. Also, other inherently related modal properties of the fiber and the stack design toward preform realization are investigated. The findings should be useful in realizing high-performance high-birefringence fiber.
机译:本文报道了一种新型的高双折射(〜10〜(-2))的空气二氧化硅光子晶体光纤结构。双折射是由于沿包层结构沿正交方向的不同尺寸的圆形气孔的优选布置而在光纤几何结构中引入了较大的轴向各向异性。提供了对光纤的双折射和截止性质的一系列研究,该研究导致通过该微结构使几何参数朝着在单模态中可实现的最大双折射最优化。此外,还研究了光纤的其他固有相关的模态特性以及实现预成型件的堆叠设计。这些发现对于实现高性能高双折射光纤将是有用的。

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