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Numerical analysis of highly birefringent photonic crystal fibers with Bragg reflectors

机译:布拉格反射器对高双折射光子晶体光纤的数值分析

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摘要

We analyze theoretically the coupling properties of Bragg gratings written in highly birefringent photonic crystal fibers with doped core and show how they can be tuned by the parameters of a microstructured fiber. We apply the coupled mode theory combined with a fully vectorial mode solver based on the plane-wave method. The results indicate large differences in interaction with the grating for the two linearly polarized fundamental modes. We show fiber designs, which provide single-mode operation with high birefringence and at the same time a high coupling efficiency of the grating. Such features can be used in fiber sensors, fiber laser configurations or to introduce a polarization dependent feedback in a long external cavity system with a semiconductor laser.
机译:我们从理论上分析了在掺有纤芯的高双折射光子晶体光纤中写入的布拉格光栅的耦合特性,并展示了如何通过微结构光纤的参数对其进行调谐。我们将耦合模式理论与基于平面波方法的全矢量模式求解器结合使用。结果表明,对于两种线性极化的基本模,与光栅的相互作用存在很大差异。我们展示了光纤设计,该设计可提供具有高双折射的单模操作,并同时具有较高的光栅耦合效率。此类功能部件可用于光纤传感器,光纤激光器配置中,或在具有半导体激光器的长外腔系统中引入偏振相关的反馈。

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