Liu Wei, Ma Pengfei, Zhou Pu, Jiang Zongfu
Opt Express. 2020 Jan 6;28(1):593-606. doi: 10.1364/OE.381761.
In this work, we derive and present the coupled amplitude equations to describe the evolutions of different spectral components in different transverse modes for Raman fiber amplifiers (RFAs). Both the effects of the four-wave-mixing in the fundamental mode (FM FWM) and the inter-modal four-wave-mixing (IM FWM) on high-power RFAs are demonstrated through numerical simulations. Specifically, effective FM FWM interaction could occur and lead to a drop of the 2nd order Raman limit for RFAs by over 50%, despite that the corresponding wave-vector mismatch is rather big. In addition, the IM FWM could also impact the 2nd order Raman limit for RFAs with additional generation of the first order Raman Stokes light in the higher-order mode. We also investigate the effects of the intensity fluctuations in the initial inserted pump and seed lasers on high-power RFAs. It reveals that the temporal stability of the initial inserted pump laser has much more significant impacts on high-power RFAs than that of the initial inserted seed laser. Notably, through applying temporal stable laser as the initial inserted pump laser, both the FM FWM and IM FWM effects could be effectively suppressed, and the 2nd order Raman limit for high-power RFAs could be increased by over twice.
在这项工作中,我们推导并给出了耦合振幅方程,以描述拉曼光纤放大器(RFA)中不同横向模式下不同光谱成分的演化。通过数值模拟展示了基模四波混频(FM FWM)和模间四波混频(IM FWM)对高功率RFA的影响。具体而言,尽管相应的波矢失配相当大,但有效的FM FWM相互作用仍可能发生,并导致RFA的二阶拉曼极限下降超过50%。此外,IM FWM也会影响RFA的二阶拉曼极限,在高阶模式中会额外产生一阶拉曼斯托克斯光。我们还研究了初始注入泵浦激光器和种子激光器中的强度波动对高功率RFA的影响。结果表明,初始注入泵浦激光器的时间稳定性对高功率RFA的影响比初始注入种子激光器的影响更为显著。值得注意的是,通过将时间稳定的激光器用作初始注入泵浦激光器,FM FWM和IM FWM效应都可以得到有效抑制,高功率RFA的二阶拉曼极限可以提高两倍以上。