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Spatial division multiplexing in nine-core graded index plastic optical fibers

机译:九芯梯度指数塑料光纤中的空间分裂复用

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摘要

We propose a spatial division multiplexing in a new designed multimode multicore graded index plastic optical fiber with nine cores arranged in an octagonal array. The influence of mode coupling on two-channel spatial division multiplexing capability in each of nine cores is investigated by solving the power flow equation. Our numerical results show that mode coupling significantly limits the fiber length at which the spatial division multiplexing can be realized in each of nine cores with a minimal crosstalk between two neighbor spatial optical channels. Two spatial channels in the proposed nine-core graded index plastic optical fiber can be employed with a minimal crosstalk up to the fiber length of 5 m, which is about 18% of the coupling length (fiber length where equilibrium mode distribution is achieved). Such characterization of multicore graded index plastic optical fibers should be considered in designing a multicore optical fiber transmission system for space division multiplexing.
机译:我们在新设计的多模多核分级指数塑料光纤中提出了一种空间分割多路复用,其中九个芯排列在八边形阵列中。通过求解电流方程,研究了模式耦合对九个核中的每一个中的两个通道空间分割复用能力的影响。我们的数值结果表明,模式耦合显着限制了空间分割多路复用的纤维长度,在每个九个核中,在两个相邻的空间光学通道之间的最小串扰中可以实现。在提出的九芯梯度指标塑料光纤中的两个空间通道可以使用最小串扰,其纤维长度为5μm,其约占耦合长度的约18%(实现平衡模式分布的纤维长度)。在设计用于太空分割复用的多芯光纤传输系统时,应考虑多核梯度指数塑料光纤的这种表征。

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