Ge Y Q, Luo J L, Li L, Jin X X, Tang D Y, Shen D Y, Zhang S M, Zhao L M
Appl Opt. 2015 Jan 1;54(1):71-5. doi: 10.1364/AO.54.000071.
We report results of numerical simulations on the various initial conditions for dark soliton generation in an all-normal-dispersion fiber laser. All the dark solitons generated are odd dark solitons. Differently from the dark soliton generation in fibers, where an arbitrary dip could evolve into a dark soliton, it is found that the dark soliton can originate only from an initial dip with a certain parameter requirement. A bright pulse with either a hyperbolic secant square, Gaussian, or Lorentz profile can be developed into a dark soliton, provided that the parameters of the initial bright pulse are selected. Dark solitons can be generated in fiber lasers only if there is a phase jump, and this phase jump can be maintained and evolve to π during the pulse evolution.
我们报告了在全正色散光纤激光器中,针对暗孤子产生的各种初始条件进行数值模拟的结果。所产生的所有暗孤子均为奇暗孤子。与光纤中暗孤子的产生不同,在光纤中任意一个凹陷都可能演化为暗孤子,而在此发现暗孤子仅能源于具有特定参数要求的初始凹陷。只要选择了初始亮脉冲的参数,具有双曲正割平方、高斯或洛伦兹分布的亮脉冲就能演化为暗孤子。只有当存在相位跃变时,暗孤子才能在光纤激光器中产生,并且这种相位跃变在脉冲演化过程中能够保持并演变为π。