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Coupling between two collinear air-core Bragg fibers

机译:两根共线空心布拉格纤维之间的耦合

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We characterize coupling between two identical collinear hollow core Bragg fibers, assuming TE_(01) launching condition. Using multipole method and finite element method we investigate dependence of the beat length between supermodes of the coupled fibers and supermode radiation losses as a function of the inter-fiber separation, fiber core radius and index of the cladding. We established that coupling is maximal when fibers are touching each other decreasing dramatically during the first tens of nanometers of separation. However, residual coupling with the strength proportional to the fiber radiation loss is very long range decreasing as an inverse square root of the inter-fiber separation, and exhibiting periodic variation with inter-fiber separation. Finally, coupling between the TE_01 modes is considered in a view of designing a directional coupler. We find that for fibers with large enough core radii one can identify broad frequency ranges where inter-modal coupling strength exceeds super-mode radiation losses by an order of magnitude, thus opening a possibility of building a directional coupler. We attribute such unusually strong inter-mode coupling both to the resonant effects in the inter-mirror cavity as well as a proximity interaction between the leaky modes localized in the mirror.
机译:假设TE_(01)发射条件,我们表征了两个相同的共线中空布拉格纤维之间的耦合。使用多极方法和有限元方法,我们研究了耦合光纤的超模之间的拍频长度与超模辐射损耗之间的相关性,它与光纤间的距离,纤芯半径和包层的折射率有关。我们确定,当纤维彼此接触时,耦合是最大的,在分离的前几十纳米中急剧减少。然而,强度与纤维辐射损耗成正比的残余耦合在很长的范围内减小,这是纤维间分离的平方根的倒数,并且随着纤维间分离表现出周期性的变化。最后,从设计定向耦合器的角度考虑TE_01模式之间的耦合。我们发现,对于纤芯半径足够大的光纤,可以识别出较宽的频率范围,其中模间耦合强度比超模辐射损耗高一个数量级,从而为构建定向耦合器提供了可能。我们将这种异常强的模间耦合归因于镜间腔中的共振效应以及镜中局部泄漏模式之间的邻近相互作用。

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