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Worst crosstalk analysis in heterogeneous and trench assisted heterogeneous multicore fiber for different core counts and layouts

机译:针对不同纤芯数量和布局的异构和沟槽辅助异构多芯光纤中最差的串扰分析

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摘要

In order to obtain appreciably low worst crosstalk level in high core count multicore fiber, heterogeneous MCF with different core configurations and layouts have been investigated analytically using coupled mode equation. The variations in worst crosstalk behavior with respect to the bending radius, core configurations, core layouts, and outer cladding thickness have been analyzed. Further, the core count dependent variations in worst crosstalk level, core pitch, and peak bending radius in different core layouts have been presented. It has been observed that the selection of core configuration, core layout, and outer cladding thickness have significant impact on the reduction in worst crosstalk level. For example, in 12-core normal-index heterogeneous MCF with SLS structure, the core Configuration 1 can provide the worst crosstalk level reduced by 7.09 dB and 16.92 dB in comparison to the other two core configurations, i.e., Configuration 2, and Configuration 3, respectively. Further, for the same core count with TA Configuration 1, SLS core layout can achieve the reduced worst crosstalk level in comparison with circular ORS and DRS, hexagonal ORS and DRS respectively by 24.62 dB, 25.86 dB, 28.87 dB and 30.64 dB.
机译:为了在高纤芯数的多纤芯光纤中获得最低的最坏串扰水平,已使用耦合模式方程分析地研究了具有不同纤芯配置和布局的异构MCF。分析了最坏串扰行为相对于弯曲半径,纤芯配置,纤芯布局和外包层厚度的变化。此外,已经提出了在不同芯布局中最坏的串扰水平,芯间距和峰值弯曲半径的芯计数相关变化。已经观察到,纤芯配置,纤芯布局和外包层厚度的选择对降低最坏串扰水平具有重大影响。例如,在具有SLS结构的12核心正常索引异构MCF中,与其他两个核心配置(即配置2和配置3)相比,核心配置1可以提供最差的串扰级别,降低了7.09 dB和16.92 dB , 分别。此外,对于具有TA配置1的相同核数,与圆形ORS和DRS,六边形ORS和DRS相比,SLS核布局可以实现降低的最坏串扰水平,分别降低了24.62 dB,25.86 dB,28.87 dB和30.64 dB。

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