Liu Yinping, Ma Lin, Yang Chen, Tong Weijun, He Zuyuan
Opt Express. 2018 Apr 30;26(9):11639-11648. doi: 10.1364/OE.26.011639.
We designed and fabricated a graded-index (GI) multicore fiber (MCF) compatible with both standard multimode and single-mode fiber for high density optical interconnect application in large-scale data centers. The proposed fiber supports long-distance multimode transmission at 850 nm as well as quasi-single mode transmission at 1310 nm and 1550 nm. The parameters of the GI-MCF have been optimized to obtain both a small differential mode delay at 850 nm and a small mode field diameter mismatch of less than 0.5 μm with single-mode fiber at 1310 nm and 1550 nm with a negligible inter-core crosstalk. In experiment, we successfully realized the multimode operation over 1 km-long GI-MCF at 850 nm and the quasi-single mode operation over 12.4 km-long GI-MCF at 1310 nm and 1550 nm at a data rate of 7×10-Gb/s. The multi-wavelengths multicore transmission was demonstrated for the first time. The experiment results imply that the proposed GI-MCF satisfies various requirements in such as operating wavelength, accessible distance and interconnect density of large-scale data center, and can effectively reduce the fiber numbers and system complexity.
我们设计并制造了一种渐变折射率(GI)多芯光纤(MCF),它与标准多模光纤和单模光纤都兼容,适用于大规模数据中心的高密度光互连应用。所提出的光纤支持850nm的长距离多模传输以及1310nm和1550nm的准单模传输。GI-MCF的参数已被优化,以在850nm处获得小的差分模延迟,并在1310nm和1550nm处与单模光纤实现小于0.5μm的小模场直径失配,且芯间串扰可忽略不计。在实验中,我们成功地在850nm下实现了超过1km长的GI-MCF的多模运行,以及在1310nm和1550nm下以7×10-Gb/s的数据速率实现了超过12.4km长的GI-MCF的准单模运行。首次展示了多波长多芯传输。实验结果表明,所提出的GI-MCF满足大规模数据中心在工作波长、可达距离和互连密度等方面的各种要求,并能有效减少光纤数量和系统复杂性。