Cheng Ruiting, He Qichen, Zuo Mingqing, Yang Yu, Peng Chuyu, Chen Zhangyuan, He Yongqi, Li Juhao
Opt Express. 2023 Sep 25;31(20):31937-31945. doi: 10.1364/OE.500845.
Weakly-coupled mode division multiplexing (MDM) technique is a promising candidate for capacity enhancement of short-reach optical interconnections, for which the multiple-ring-core few-mode fiber (MRC-FMF) has been proven to be an effective design method to suppress distributed modal crosstalk. Similar to low chromatic-dispersion (CD) O-band transmission based on single-mode fibers (SMF), all the mode channels in a weakly-coupled FMF for short-reach applications should achieve low CD to support intensity-modulation/direct-detection (IM/DD) transmission. In this paper, we propose, for the first time to the best of our knowledge, an index perturbation method to adjust both effective index and CD of each mode in an MRC-FMF. Firstly, an accurate modeling method to model the relationship between SiO-GeO material index and the germanium concentration at different wavelengths is proposed by analyzing the index characteristics of 4 kinds of germanium-doped fused silica SMFs at the same fabrication processing, which could be utilized to calculate the CD characteristics for an MRC-FMF with perturbed index profile. Then, based on the perturbation method considering the influences on both effective index and CD, a weakly-coupled low-CD MRC-FMF supporting 4 linearly-polarized (LP) modes is designed and fabricated. The measured minimum effective index difference min|Δn| among all modes is larger than 1.3 × 10, and the CD values of all the modes lie between -6 and +6 ps/km/nm ranging from 1280 to 1320 nm, which agree well with the design. The 2-km transmission experiment indicates that the fabricated MRC-FMF could support stable digital-signal-processing (DSP)-free IM/DD transmission for all the 4 LP modes. This work is beneficial to the application of short-reach weakly-coupled MDM systems.
弱耦合模式分割复用(MDM)技术是提升短距离光互连容量的一种很有前景的候选技术,对于该技术,多环芯少模光纤(MRC-FMF)已被证明是一种抑制分布式模式串扰的有效设计方法。与基于单模光纤(SMF)的低色散(CD)O波段传输类似,用于短距离应用的弱耦合少模光纤中的所有模式通道都应实现低CD,以支持强度调制/直接检测(IM/DD)传输。据我们所知,本文首次提出一种折射率微扰方法,用于调整MRC-FMF中各模式的有效折射率和CD。首先,通过分析4种在相同制造工艺下的掺锗熔石英单模光纤的折射率特性,提出了一种精确的建模方法,用于模拟SiO-GeO材料折射率与不同波长下锗浓度之间的关系,该方法可用于计算折射率分布受微扰的MRC-FMF的CD特性。然后,基于同时考虑对有效折射率和CD影响的微扰方法,设计并制造了一种支持4个线偏振(LP)模式的弱耦合低CD MRC-FMF。测量得到的所有模式之间的最小有效折射率差min|Δn|大于1.3×10,并且在1280至1320nm范围内,所有模式的CD值介于-6和+6ps/km/nm之间,与设计结果吻合良好。2km的传输实验表明,制造的MRC-FMF能够支持所有4个LP模式的稳定无数字信号处理(DSP)的IM/DD传输。这项工作有利于短距离弱耦合MDM系统的应用。