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Ultrafast fiber lasers based on self-similar pulse evolution: a review of current progress

机译:基于自相似脉冲演化的超快光纤激光器:当前进展的回顾

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Self-similar fiber oscillators are a relatively new class of mode-locked lasers. In these lasers, the self-similar evolution of a chirped parabolic pulse in normally-dispersive passive, active, or dispersion-decreasing fiber (DDF) is critical. In active (gain) fiber and DDF, the novel role of local nonlinear attraction makes the oscillators fundamentally different from any mode-locked lasers considered previously. In order to reconcile the spectral and temporal expansion of a pulse in the self-similar segment with the self-consistency required by a laser cavity's periodic boundary condition, several techniques have been applied. The result is a diverse range of fiber oscillators which demonstrate the exciting new design possibilities based on the self-similar model. Here, we review recent progress on self-similar oscillators both in passive and active fiber, and extensions of self-similar evolution for surpassing the limits of rare-earth gain media. We discuss some key remaining research questions and important future directions. Self-similar oscillators are capable of exceptional performance among ultrashort pulsed fiber lasers, and may be of key interest in the development of future ultrashort pulsed fiber lasers for medical imaging applications, as well as for low-noise fiber-based frequency combs. Their uniqueness among mode-locked lasers motivates study into their properties and behaviors and raises questions about how to understand mode-locked lasers more generally.
机译:自相似光纤振荡器是一类相对较新的锁模激光器。在这些激光器中,normally形抛物线脉冲在正常色散无源,有源或色散减小光纤(DDF)中的自相似演化至关重要。在有源(增益)光纤和DDF中,局部非线性吸引的新颖作用使振荡器与以前考虑的任何锁模激光器根本不同。为了使自相似段中脉冲的频谱和时间扩展与激光腔的周期性边界条件所需的自洽相一致,已应用了多种技术。结果是各种各样的光纤振荡器,这些振荡器展示了基于自相似模型的令人兴奋的新设计可能性。在这里,我们回顾了无源和有源光纤中自相似振荡器的最新进展,以及自相似演化的扩展,以超越稀土增益介质的极限。我们讨论了一些关键的剩余研究问题和重要的未来方向。自相似振荡器在超短脉冲光纤激光器中具有出色的性能,并且可能是未来医学成像应用以及基于低噪声光纤频率梳的超短脉冲光纤激光器发展的关键。它们在锁模激光器中的独特性激发了对其特性和行为的研究,并引发了有关如何更一般地理解锁模激光器的问题。

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