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Simulation and research of few-mode optical fiber DMD degradation due to geometry deviation from optimized form

机译:由于几何形状偏离优化形式而导致的少模光纤DMD退化的仿真研究

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摘要

This work presents an alternative fast and simple method for the design of a graded refractive index profile of silica few-mode optical fibers (FMFs) with enlarged core diameter that extremely improves mode effective area, and low differential mode delay (DMD). We demonstrate some results of refractive index profile optimization for 16-LP-mode FMF with enlarged core diameter up to 42m and mode effective area more 130m(2) under DMD reduction less 120ps/km all over C-band and less 40ps/km at =1550nm region. We also propose approach for simulation of the deviation of real optical fiber geometry from the optimized form and rigorous method for analysis of large core complicated optical fiber. Here, FMF core asymmetrical ellipticity together with the refractive index profile distortions were considered. They were set and simulated by data from reports of the real commercially available laser-optimized multimode optical fibers of TIA/ISO Cat. OM2+/OM3 refractive index profile measurements, performed by lab optical fiber analyzer kit. We present results of researches of considered FMF DMD spectral curve degradation due to described core geometry deviation from the optimized form. It was noticed, that unlike to only refractive index local fluctuations, FMF core non-circularity strongly distorts higher-order mode field distribution that affects to spectral mode delay curves and may lead to critical total DMD increasing.
机译:这项工作提出了一种替代的快速简便的方法,用于设计纤芯直径增大的二氧化硅少模光纤(FMF)的渐变折射率分布,极大地提高了模有效面积,并降低了差模延迟(DMD)。我们展示了16-LP模式FMF的折射率分布最优化的一些结果,其核心直径最大扩展到42m,并且在DMD减小的情况下,模式有效面积更大130m(2),整个C波段减小120ps / km,在40°C减小40ps / km = 1550nm区域。我们还提出了模拟实际光纤几何形状与优化形式的偏差的方法,以及用于分析大芯复杂光纤的严格方法。在此,考虑了FMF纤芯的不对称椭圆率以及折射率分布畸变。它们是根据TIA / ISO Cat的实际商用激光优化多模光纤的报告中的数据进行设置和模拟的。 OM2 + / OM3折射率分布测量,由实验室光纤分析仪套件执行。我们介绍了由于描述的核心几何形状偏离优化形式而导致的FMF DMD频谱曲线退化的研究结果。注意到,不同于仅折射率局部波动,FMF芯的非圆形度强烈扭曲了高阶模场分布,这影响了光谱模延迟曲线,并可能导致临界总DMD增加。

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