Tsekrekos C P, Smink R W, de Hon B P, Tijhuis A G, Koonen A M
Opt Express. 2007 Apr 2;15(7):3656-64. doi: 10.1364/oe.15.003656.
Selective excitation of graded-index multimode fibers (GI-MMFs) with a single-mode fiber (SMF) has gained increased interest for telecommunication applications. It has been proposed as a way to enhance the transmission bandwidth of GI-MMF links and/or create parallel communication channels over the same GI-MMF. Although the effect of SMF excitation on the transmission bandwidth has been investigated, its impact on the near-field intensity pattern at the output face of the GI-MMF has not been systematically addressed. We have carried out an analysis of the near-field intensity pattern at the output face of silica-based GI-MMFs excited by a radially offset SMF. Simulation results exhibit all of the features displayed by experimental ones. It turns out that differential mode attenuation and delay, full intra-group mode mixing, and small deviations in the refractive index profile of the GI-MMF do not affect the overall shape of the near-field intensity, which is determined by the radial offset of the input SMF. This can be exploited in mode group diversity multiplexing links. The effect of defects in the refractive index profile, such as a central dip or peak, is also examined.
利用单模光纤(SMF)对渐变折射率多模光纤(GI-MMF)进行选择性激发,在电信应用中已引起越来越多的关注。它被提议作为一种增强GI-MMF链路传输带宽和/或在同一GI-MMF上创建并行通信通道的方法。尽管已经研究了SMF激发对传输带宽的影响,但其对GI-MMF输出端面近场强度分布的影响尚未得到系统研究。我们对径向偏移的SMF激发的二氧化硅基GI-MMF输出端面的近场强度分布进行了分析。模拟结果展现出了实验结果所显示的所有特征。结果表明,差分模式衰减和延迟、全组内模式混合以及GI-MMF折射率分布的微小偏差不会影响近场强度的整体形状,近场强度的整体形状由输入SMF的径向偏移决定。这可用于模式组分集复用链路。还研究了折射率分布中的缺陷,如中心凹陷或峰值的影响。