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The effect of coupling between core and cladding modes in twisted microstructured optical fibers

机译:扭曲微结构光纤中纤芯和包层模式之间的耦合效应

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We provide a detailed explanation of the effect of coupling in helical microstructured optical fibers (MOFs) based on decomposition of core and cladding modes into multiple angular harmonics, each carrying integer orbital angular momentum and spin. The obtained results show that in twisted hexagonal MOFs, the fundamental mode characterized by spin σ may couple only to the cladding modes composed of harmonics carrying the total angular momentum J=6K+σ, where K is an integer number. Strongest couplings are observed to the cladding modes composed primarily of the harmonics with the same spin as the fundamental mode. However, there is also a second type of coupling to the modes composed primarily of the harmonics with opposite spin, which we identify for the first time in case of twisted MOFs. These couplings result in polarization dependent narrow maxima in loss characteristics of the fundamental modes. Furthermore, we explain how the harmonic of opposite spins influence the ellipticity angle distribution in the cladding modes.
机译:我们基于芯和包层模式的分解成多个角次谐波,提供了对螺旋微观结构化光纤(MOF)耦合的影响的详细说明,每种携带整数轨道角动量和旋转。获得的结果表明,在扭曲的六边形MOF中,由旋转σ表征的基本模式可以仅耦合于携带总角动量J = 6k +σ的谐波组成的包层模式,其中k是整数。将最强的联轴器观察到主要由谐波组成的覆层模式,与基本模式相同的旋转。然而,还存在与主要旋转的谐波组成的第二种类型的耦合,这是我们在扭曲的MOF的情况下首次识别。这些耦合导致极化相关的窄最大值,其基本模式的损耗特性。此外,我们解释了相反旋转的谐波如何影响包层模式中的椭圆形角度分布。

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