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首页> 外文期刊>Journal of Lightwave Technology >Design of Few-Mode Fibers With M-modes and Low Differential Mode Delay
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Design of Few-Mode Fibers With M-modes and Low Differential Mode Delay

机译:具有M模和低差模延迟的少模光纤的设计

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In this paper, we investigate the design of few-mode fibers (FMFs) guiding 2 to 12 linearly polarized (LP) modes with low differential mode delay (DMD) over the C-band, suitable for long-haul transmission. Two different types of refractive index profile have been considered: a graded-core with a cladding trench (GCCT) profile and a multi-step-index (MSI) profile. The profiles parameters are optimized in order to achieve: the lowest possible DMD and macro-bend losses (MBL) lower than the ITU-T standard recommendation. The optimization results show that the MSI profiles present lower DMD than the minimum achieved with a GCCT profile. Moreover, it is shown that the optimum DMD and the MBL scale with the number of modes for both profiles. The optimum DMD obtained for 12 LP modes is lower than 3 ps/km using a GCCT profile and lower than 2.5 ps/km using a MSI profile. The optimization results reveal that the most preponderant parameter of the GCCT profile is the refractive index relative difference at the core center, ${Delta}n_{co}$. Reducing ${Delta}n_{co}$, the DMD is reduced at the expense of increasing the MBL. Regarding the MSI profiles, it is shown that 64 steps are required to obtain a DMD improvement considering 12 LP modes. Finally, the impact of the fabrication margins on the optimum DMD is analyzed. The probability of having a manufactured FMF with 12 LP modes and DMD lower than 12 ps/km is approximately 68% using a GCCT profile and 16% using a MSI profile.
机译:在本文中,我们研究了在C波段上以低差分模式延迟(DMD)引导2至12个线性偏振(LP)模式的少模光纤(FMF)的设计,适用于长距离传输。已经考虑了两种不同类型的折射率分布:具有包层沟槽(GCCT)分布的渐变纤芯和多步折射率(MSI)分布。配置文件参数经过优化以实现:最低的DMD和宏弯损耗(MBL)低于ITU-T标准建议。优化结果表明,MSI轮廓显示的DMD低于GCCT轮廓实现的最小值。此外,还表明,最佳DMD和MBL随两个配置文件的模式数量而缩放。使用GCCT曲线,对于12种LP模式获得的最佳DMD低于3 ps / km,而使用MSI曲线,则低于2.5 ps / km。优化结果表明,GCCT曲线的最主要参数是纤芯中心的折射率相对差$ {Delta} n_ {co} $。减少$ {Delta} n_ {co} $,减少DMD的代价是增加MBL。关于MSI配置文件,考虑到12个LP模式,需要64个步骤来获得DMD改进。最后,分析了制造余量对最佳DMD的影响。使用GCCT曲线,制造的具有12个LP模式且DMD低于12 ps / km的FMF的可能性约为68%,而使用MSI曲线为16%。

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