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首页> 外文期刊>Journal of the Optical Society of America, B. Optical Physics >Dynamics of soliton explosions in passively mode-locked fiber lasers
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Dynamics of soliton explosions in passively mode-locked fiber lasers

机译:被动锁模光纤激光器中孤子爆炸的动力学

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A soliton explosion is an instability whereby a dissipative soliton undergoes a sudden structural collapse but remarkably returns back to its original shape after a short transient. We recently reported the first experimental observation of this effect in a fiber laser [Optica 2, 36 (2015)]. Here, we expand on our initial work, presenting a more detailed experimental and numerical study of the characteristics and dynamics of soliton explosions in passively mode-locked fiber lasers. Specifically, we explore different cavity configurations and gain levels, observing and characterizing explosion events using spectral and temporal real-time single-shot techniques. Our results highlight that the explosion characteristics observed in experiments depend critically on the position in the cavity where the output coupler is located. Furthermore, we find that the probability with which explosions occur depends on the pump power. We also identify a new kind of "partial" explosion, where strong spectral interference fringes appear on the pulse spectra, but a full collapse is avoided. Finally, we perform numerical simulations based on a realistic iterative cavity map and obtain results that are in good qualitative agreement with experimental measurements. Careful analysis of the simulation results provides strong credence to the interpretation that soliton explosions can be linked to a multipulsing instability. (C) 2015 Optical Society of America
机译:孤子爆炸是一种不稳定状态,耗散性孤子会经历突然的结构崩溃,但在短暂的瞬变后会明显返回其原始形状。我们最近报道了在光纤激光器中对该效果的首次实验观察[Optica 2,36(2015)]。在这里,我们扩展了我们的初始工作,对无源锁模光纤激光器中孤子爆炸的特征和动力学进行了更详细的实验和数值研究。具体来说,我们探索不同的腔体结构和增益水平,使用频谱和时间实时单发技术观察和表征爆炸事件。我们的结果表明,在实验中观察到的爆炸特性关键取决于输出耦合器所在腔体中的位置。此外,我们发现发生爆炸的可能性取决于泵浦功率。我们还确定了一种新的“部分”爆炸,在该爆炸中,脉冲频谱上出现了强频谱干扰条纹,但避免了完全崩溃。最后,我们基于逼真的迭代腔图执行数值模拟,并获得与实验测量结果具有良好定性的结果。对仿真结果的仔细分析为孤立子爆炸可能与多脉冲不稳定性相关的解释提供了强有力的依据。 (C)2015年美国眼镜学会

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