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Full-vectorial coupled mode theory for the evaluation of macro-bending loss in multimode fibers. application to the hollow-core photonic bandgap fibers

机译:全矢量耦合模理论,用于评估多模光纤中的宏弯曲损耗。在中空光子带隙光纤中的应用

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摘要

In the hollow core photonic bandgap fibers, modal losses are strongly differentiated, potentially enabling effectively single mode guidance. However, in the presence of macro-bending, due to mode coupling, power in the low-loss mode launched into a bend is partially transferred into the modes with higher losses, thus resulting in increased propagation loss, and degradation of the beam quality. We show that coupled mode theory formulated in the curvilinear coordinates associated with a bend can describe correctly both the bending induced loss and beam degradation. Suggested approach works both in absorption dominated regime in which fiber modes are square integrable over the fiber crossection, as well as in radiation dominated regime in which leaky modes are not square integrable. It is important to stress that for multimode fibers, full-vectorial coupled mode theory developed in this work is not a simple approximation, but it is on par with such "exact" numerical approaches as finite element and finite difference methods for prediction of macro-bending induced losses. (C) 2008 Optical Society of America.
机译:在中空光子带隙光纤中,模态损耗有很大的区别,有可能有效地实现单模导引。然而,在宏弯曲的情况下,由于模式耦合,发射到弯曲处的低损耗模式中的功率被部分地转移到具有更高损耗的模式中,从而导致传播损耗增加,并且光束质量下降。我们表明,在与弯曲相关的曲线坐标中公式化的耦合模式理论可以正确描述弯曲引起的损耗和光束退化。建议的方法既适用于吸收占主导的模式,在该模式下纤维模式在纤维截面上可平方积分,也适用于辐射占主导的模式,其中泄漏模式不可平方。需要强调的是,对于多模光纤,这项工作中开发的全矢量耦合模理论并不是简单的近似,而是与诸如有限元和有限差分法这样的“精确”数值方法可以用来预测宏观模态。弯曲引起的损失。 (C)2008年美国眼镜学会。

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