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Rectangular Array Multicore Fiber Realizing Low Crosstalk Suitable for Next-Generation Short-Reach Optical Interconnects With Low Misalignment Loss

机译:具有低串扰的矩形阵列多芯光纤,适用于具有低失准损耗的下一代短距离光纤互连

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摘要

Toward the next-generation exa-scale short-reach optical interconnects (OIs) supporting large-capacity data transmission, a compact computer-compatible 8-core heterogeneous trench-assisted multicore fiber (TA-MCF) is proposed, in which cores are arranged in a rectangular array. To analyze the crosstalk (XT) between adjacent cores of TA-MCF OI, a rigorous full-vectorial H- field finite element method (FEM) and coupled power theory are applied. The impact of various trench design parameters on the mode-coupling coefficient Cmn and the coupling length Lc is discussed in detail. An accurate explicit condition for the achievement of low XT in an 8-core heterogeneous TA-MCF OI is obtained through numerical simulations. A rigorous modal solution approach based on the computationally efficient FEM and the least squares boundary residual method is employed to analyze the coupling loss caused by the misalignment to a butt-coupled TA-MCF OI.
机译:面向支持大容量数据传输的下一代Exa级短距离光互连(OI),提出了一种紧凑型计算机兼容的8芯异质沟槽辅助多芯光纤(TA-MCF),其中排列了芯在一个矩形阵列中。为了分析TA-MCF OI相邻磁芯之间的串扰(XT),应用了严格的全矢量H场有限元方法(FEM)和耦合功率理论。详细讨论了各种沟槽设计参数对模式耦合系数Cmn和耦合长度Lc的影响。通过数值模拟获得了在8核异构TA-MCF OI中实现低XT的准确明确条件。基于计算效率高的有限元法和最小二乘边界残差法,采用一种严格的模态求解方法来分析由于对接耦合的TA-MCF OI不对准而引起的耦合损耗。

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