Huang Yu-Qi, Hu Zi-Ang, Cui Hu, Luo Zhi-Chao, Luo Ai-Ping, Xu Wen-Cheng
Opt Lett. 2016 Sep 1;41(17):4056-9. doi: 10.1364/OL.41.004056.
We report the coexistence of high-order harmonic soliton molecules and rectangular noise-like pulses (NLP) in a figure-eight fiber laser mode-locked by a nonlinear amplifying loop mirror. The harmonic soliton molecule has a repetition rate of 936.6 MHz, corresponding to the 466th harmonics of the fundamental cavity repetition rate, with soliton separation of 16.5 ps. Meanwhile, the rectangular NLP operates at the fundamental repetition rate. In addition, these two types of pulses could be generated independently by manipulating the polarization controllers. The experimental results demonstrate an interesting operation regime of the fiber laser and contribute to enriching the dynamics of mode-locked pulses in fiber lasers.
我们报道了在由非线性放大环形镜锁模的八字形光纤激光器中高阶谐波孤子分子与矩形类噪声脉冲(NLP)的共存情况。谐波孤子分子的重复频率为936.6 MHz,对应于基本腔重复频率的第466次谐波,孤子间距为16.5 ps。同时,矩形NLP以基本重复频率运行。此外,通过操作偏振控制器可以独立产生这两种类型的脉冲。实验结果展示了光纤激光器一种有趣的运行状态,并有助于丰富光纤激光器中锁模脉冲的动力学特性。