Qiu Ziang, Li Rong, Hu Liang, Wu Guiling, Chen Jianping
Opt Lett. 2024 May 15;49(10):2761-2764. doi: 10.1364/OL.524886.
We report on the realization of a unidirectional transmission-based bidirectional erbium-doped fiber amplifier (UTB-EDFA) for the coherent optical fiber links. By applying an optical phase-locked loop (OPLL) between the two unidirectional EDFA (Ui-EDFA) paths, the annoying uncorrelated phase noise between the two paths can be largely suppressed. Promisingly, we can independently optimize the gains of the UTB-EDFAs for bidirectional transmissions, resulting in higher net gain acquired compared with the conventional single-path bidirectional EDFA (SPBA)-based ones. We demonstrate that the fractional frequency instability of the UTB-EDFA-based scheme can be decreased by 26.3% over the most asymmetrical 100 km two-way optical frequency comparison (TWC) system compared with the SPBA-based ones and, more importantly, can acquire higher net gain for unevenly distributed sub-links over ultra-long fiber links, such as 1000 km, by independently optimizing the gains. This technique paves the way for the applications of large-scale fiber networks.
我们报道了一种用于相干光纤链路的基于单向传输的双向掺铒光纤放大器(UTB-EDFA)的实现。通过在两条单向掺铒光纤放大器(Ui-EDFA)路径之间应用光锁相环(OPLL),两条路径之间恼人的不相关相位噪声可得到大幅抑制。很有前景的是,我们可以独立优化UTB-EDFA在双向传输中的增益,与传统的基于单路径双向掺铒光纤放大器(SPBA)的放大器相比,能获得更高的净增益。我们证明,与基于SPBA的方案相比,在最不对称的100公里双向光频比较(TWC)系统中,基于UTB-EDFA的方案的分数频率不稳定性可降低26.3%,更重要的是,通过独立优化增益,对于超长光纤链路(如1000公里)上分布不均的子链路,它能获得更高的净增益。这项技术为大规模光纤网络的应用铺平了道路。