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Low-DMD and low-crosstalk few-mode multi-core fiber with air-trench/holes assisted graded-index profile

机译:低DMD和低串扰少量模式多芯光纤,带空气沟/孔辅助分级索引轮廓

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摘要

We propose a novel scheme of air-trench (AT) assisted graded-index profile to design a heterogeneous few-mode multi-core fiber (hetero-FM-MCF) with high density of cores and low inter-core crosstalk (XT). By the using of finite element method (FEM), it is revealed that the AT structure can remarkably reduce XT and bending loss, and leaving no significant impact on other fiber properties. The numerical analyses show that the AT hetero-FM-MCF achieves a low XT of about -66 dB/km (15.7% lower than that of trench-assisted (TA) hetero-FM-MCF), the max differential model delay (DMD) over C+L band of 70 ps/km and relative core multiplicity factor (RCMF) of 41.7. To further improve the light confinement ability of individual cores, air-holes (AH) are introduced to the AT structure. The air-trench/hole assisted (AT-AH) hetero-FM-MCF generates a lower XT of -68 dB/km and 6% bending loss values optimization than AT hetero-FM-MCF.
机译:我们提出了一种新颖的空气沟(AT)辅助分级索引曲线方案,以设计具有高密度的核和低核串扰(XT)的异质少量模式多核光纤(异质FM-MCF)。 通过使用有限元方法(FEM),揭示了AT结构可以显着降低XT和弯曲损失,并且对其他纤维性能没有显着影响。 数值分析表明,杂交FM-MCF达到约-66dB / km的低XT(低于沟槽辅助(TA)异质-CM-MCF的15.7%),最大差分模型延迟(DMD )在70 ps / km的C + L带上,相对核心多重因子(RCMF)为41.7。 为了进一步改善单个核的光限制能力,将气孔(AH)引入AT结构。 空气沟/孔辅助(AT-AH)异质FM-MCF产生的XT为-68dB / km和6%弯曲损耗值优于Hetero-FM-MCF。

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