Turitsyna E G, Falkovich Gregory, El-Taher Atalla, Shu Xuewen, Harper Paul, Turitsyn Sergei K
Photonics Research Group , Aston University , Birmingham B4 7ET, UK.
Proc Math Phys Eng Sci. 2012 Sep 8;468(2145):2496-2508. doi: 10.1098/rspa.2012.0037. Epub 2012 May 2.
We study numerically optical turbulence using the particular example of a recently created, ultra-long fibre laser. For normal fibre dispersion, we observed an intermediate state with an extremely narrow spectrum (condensate), which experiences instability and a sharp transition to a fluctuating regime with a wider spectrum. We demonstrate that the number of modes has an impact on the condensate's lifetime. The smaller the number of modes, the more resistant is the condensate to perturbations. Experimental results show a good agreement with numerical simulations.
我们以最近制造的超长光纤激光器这一具体实例对光学湍流进行了数值研究。对于正常光纤色散,我们观察到一种具有极窄光谱(凝聚态)的中间状态,该状态会经历不稳定性并急剧转变为具有更宽光谱的波动状态。我们证明模式数量对凝聚态的寿命有影响。模式数量越少,凝聚态对微扰的抵抗力越强。实验结果与数值模拟结果吻合良好。