Runge Antoine F J, Alexander Tristram J, Newton Joseph, Alavandi Pranav A, Hudson Darren D, Blanco-Redondo Andrea, de Sterke C Martijn
Opt Lett. 2020 Jul 1;45(13):3365-3368. doi: 10.1364/OL.393835.
We study the propagation of ultrashort pulses in optical fiber with gain and positive (or normal) quartic dispersion by self-similarity analysis of the modified nonlinear Schrödinger equation. We find an exact asymptotic solution, corresponding to a triangle-like intensity profile, with a chirp, which is confirmed by numerical simulations. This solution follows different amplitude and width scaling compared to the conventional case with quadratic dispersion. We also suggest, and numerically investigate, a fiber laser consisting of components with positive quartic dispersion that emits quartic self-similar pulses.
我们通过对修正的非线性薛定谔方程进行自相似分析,研究了具有增益和正(或正常)四次色散的光纤中超短脉冲的传播。我们找到了一个精确的渐近解,对应于一个类似三角形的强度分布,并带有啁啾,这一结果通过数值模拟得到了证实。与具有二次色散的传统情况相比,该解遵循不同的幅度和宽度缩放规律。我们还提出并通过数值研究了一种由具有正四次色散的组件组成的光纤激光器,它能发射四次自相似脉冲。