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遗传算法优化类噪声脉冲光纤激光器的宽带运转。

Genetic algorithm optimization of broadband operation in a noise-like pulse fiber laser.

机构信息

Université de Franche-Comté, Institut FEMTO-ST, CNRS UMR 6174, 25000, Besançon, France.

State Key Laboratory of Integrated Optoelectronics, College of Electronic Science and Engineering, Jilin University, Changchun, 130012, China.

出版信息

Sci Rep. 2023 Feb 1;13(1):1865. doi: 10.1038/s41598-023-28689-8.

Abstract

The noise-like pulse regime of optical fiber lasers is highly complex, and associated with multiscale emission of random sub-picosecond pulses underneath a much longer envelope. With the addition of highly nonlinear fiber in the cavity, noise-like pulse lasers can also exhibit supercontinuum broadening and the generation of output spectra spanning 100's of nm. Achieving these broadest bandwidths, however, requires careful optimization of the nonlinear polarization rotation based saturable absorber, which involves a very large potential parameter space. Here we study the spectral characteristics of a broadband noise-like pulse laser by scanning the laser operation over a random sample of 50,000 polarization settings, and we quantify that these broadest bandwidths are generated in only [Formula: see text] 0.5% of cases. We also show that a genetic algorithm can replace trial and error optimization to align the cavity for these broadband operating states.

摘要

光纤激光器的类噪声脉冲状态非常复杂,与在更长的包络下随机发射的亚皮秒短脉冲的多尺度发射有关。在腔中加入高非线性光纤后,类噪声脉冲激光器还可以展宽超连续谱,并产生跨越 100nm 的输出光谱。然而,要实现最宽的带宽,需要仔细优化基于非线性偏振旋转的可饱和吸收体,这涉及到一个非常大的潜在参数空间。在这里,我们通过在 50000 个随机偏振设置上扫描激光的操作来研究宽带类噪声脉冲激光器的光谱特性,并定量分析这些最宽带宽仅在[Formula: see text]0.5%的情况下产生。我们还表明,遗传算法可以代替反复试验的优化来调整腔以适应这些宽带工作状态。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/68a9/9892598/6592fdc6a509/41598_2023_28689_Fig1_HTML.jpg

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