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低损耗高双折射空芯光子晶体光纤的设计

Design of low-loss and highly birefringent hollow-core photonic crystal fiber.

作者信息

Roberts P J, Williams D P, Sabert H, Mangan B J, Bird D M, Birks T A, Knight J C, Russell P St J

机构信息

BlazePhotonics Ltd, University of Bath Campus, Claverton Down, Bath BA2 7AY, United Kingdom.

出版信息

Opt Express. 2006 Aug 7;14(16):7329-41. doi: 10.1364/oe.14.007329.

Abstract

A practical hollow-core photonic crystal fiber design suitable for attaining low-loss propagation is analyzed. The geometry involves a number of localized elliptical features positioned on the glass ring that surrounds the air core and separates the core and cladding regions. The size of each feature is tuned so that the composite core-surround geometry is antiresonant within the cladding band gap, thus minimizing the guided mode field intensity both within the fiber material and at material/air interfaces. A birefringent design, which involves a 2-fold symmetric arrangement of the features on the core-surround ring, gives rise to wavelength ranges where the effective index difference between the polarization modes is larger than 10(-4). At such high birefringence levels, one of the polarization modes retains favorable field exclusion characteristics, thus enabling low-loss propagation of this polarization channel.

摘要

分析了一种适用于实现低损耗传播的实用空心光子晶体光纤设计。其几何结构包括一些位于围绕空气芯的玻璃环上的局部椭圆形特征,该玻璃环将芯区和包层区分开。调整每个特征的尺寸,以使复合芯-环绕结构在包层带隙内产生反共振,从而使光纤材料内部以及材料/空气界面处的导模场强度最小化。一种双折射设计,即在芯-环绕环上采用二倍对称排列的特征,会产生一些波长范围,其中偏振模式之间的有效折射率差大于10^(-4)。在如此高的双折射水平下,其中一个偏振模式保持良好的场排斥特性,从而实现该偏振通道的低损耗传播。

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