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Eight-mode ring-core few-mode fiber using cross-arranged different-material-filling side holes

机译:使用交叉布置的不同材料填充侧孔八模环芯少量模式光纤

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摘要

We propose an eight-spatial-mode ring-core few-mode fiber (RC-FMF), utilizing the cross-arranged different-material-filling side holes (CA DMFSH) for effective index difference improvement. Two GeO2-doped-silica side holes and two air-filling side holes are arranged orthogonally around the ring core, which have directionally different effects on the refractive index and the mode field distribution in the RC-FMF. The results indicate that the effective index difference (Delta n(eff)) between adjacent spatial modes is larger than 1.96 x 10(-4), and the Delta n(eff) between adjacent non-degenerated modes can be above 1.01 x 10(-3) at the same time. Bend-resistant performance and low nonlinearity are achieved in the designed RC-FMF. Broadband performances ranging from 1510 to 1630 nm are also analyzed. The CA-DMFSH-assisted structure shows great potential for enlarging the effective index difference, and the proposed fiber targets applications in the short-reach space-division multiplexing optical networking while eliminating the complex multi-input/multi-output digital signal processing. (C) 2020 Optical Society of America
机译:我们提出了一种八个空间模式环核的少量模式光纤(RC-FMF),利用交叉布置的不同材料填充侧孔(CA DMFSH),以实现有效的指标差异改进。两个GeO2掺杂二氧化硅侧孔和两个空气填充侧孔在环芯周围垂直布置,这对RC-FMF中的折射率和模式场分布具有方向不同的影响。结果表明,相邻的空间模式之间的有效指数差(Delta n(Eff))大于1.96×10(-4),并且相邻的非退化模式之间的δn(eff)可以高于1.01×10( -3)同时。在设计的RC-FMF中实现了耐弯曲性能和低非线性。还分析了1510至1630 nm的宽带性能。 CA-DMFSH辅助结构显示出扩大有效指标差异的巨大潜力,并且所提出的光纤目标在短到达空间多路复用光网络中的应用,同时消除了复杂的多输入/多输出数字信号处理。 (c)2020美国光学学会

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    《Applied optics》 |2020年第15期|共8页
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