Wang Jinzhang, Cai Zhiping, Xu Ping, Du Geguo, Wang Fengqiu, Ruan Shuangchen, Sun Zhipei, Hasan Tawfique
Opt Express. 2015 Apr 20;23(8):9947-58. doi: 10.1364/OE.23.009947.
We numerically and experimentally analyze the output characteristics and pulse dynamics of carbon nanotube mode-locked fiber lasers near zero cavity dispersion (from 0.02 to ~-0.02 ps(2)). We focus on such near zero dispersion cavities to reveal the dispersion related transition between different mode-locking regimes (such as soliton-like, stretched-pulse and self-similar regimes). Using our proposed model, we develop a nanotube-mode-locked fiber laser setup generating ~97 fs pulse which operates in the stretched-pulse regime. The corresponding experimental results and pulse dynamics are in good agreement with the numerical results. Also, the experimental results from soliton-like and self-similar regimes exhibit the same trends with simulations. Our study will aid design of different mode-locking regimes based on other new saturable absorber materials to achieve ultra-short pulse duration.
我们通过数值模拟和实验分析了近零腔色散(从0.02到约-0.02 ps²)附近碳纳米管锁模光纤激光器的输出特性和脉冲动力学。我们聚焦于此类近零色散腔,以揭示不同锁模机制(如类孤子、拉伸脉冲和自相似机制)之间与色散相关的转变。利用我们提出的模型,我们开发了一种产生约97 fs脉冲且工作在拉伸脉冲机制下的纳米管锁模光纤激光器装置。相应的实验结果和脉冲动力学与数值结果吻合良好。此外,类孤子机制和自相似机制的实验结果与模拟结果呈现出相同的趋势。我们的研究将有助于基于其他新型饱和吸收体材料设计不同的锁模机制,以实现超短脉冲持续时间。