具有降低弯曲损耗和场畸变的单气孔环形多边形光子晶体光纤

F. Poli, S. Selleri
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引用次数: 1

摘要

本文研究了可用于高功率光纤激光器的单气孔环大模面积多边形光子晶体光纤。提出了一种新的设计,根据多边形对称,在一个固体核心周围形成一个单一的环。考虑了八角形和十角形对称性来设计受弯曲条件下产生的惩罚影响较小的光纤,特别是损耗和导模场畸变。分析比较了有效面积为1400mum2、基模约束损耗小于0.3 dB/m、1064nm高阶约束损耗约为1 dB/m的不同光纤的弯曲性能。仿真结果表明,当考虑具有十角形对称性的光子晶体光纤时,通过圆形核心区域上的重叠因子来评估的模式畸变以及损耗值可以降低。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Single air-hole ring polygonal photonic crystal fibers with reduced bending loss and field distortion
In the present paper large mode area polygonal photonic crystal fibers with a single air-hole ring, which can be exploited for high-power fiber laser applications, have been studied. A new design that structures the air-holes in a single ring, according to a polygonal symmetry, around a solid core has been proposed. Octagonal and decagonal symmetries have been considered to design fibers less affected by the penalties arising in bending conditions, in particular the loss and the guided mode field distortion. The bending properties of different fibers with an effective area of 1400 mum2, confinement loss lower than 0.3 dB/m for the fundamental mode, and about 1 dB/m for the first higher order one at 1064 nm, have been analyzed and compared. Simulation results have shown that the mode distortion, evaluated through an overlap factor on a circular core region, as well as the loss value, can be reduced when considering photonic crystal fibers with a decagonal symmetry.
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