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Dispersion engineering of mode-locked fibre lasers

机译:模式锁定光纤激光器的分散工程

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摘要

Mode-locked fibre lasers are important sources of ultrashort pulses, where stable pulse generation is achieved through a balance of periodic amplitude and phase evolutions. A range of distinct cavity pulse dynamics have been revealed, arising from the interplay between dispersion and nonlinearity in addition to dissipative processes such as filtering. This has led to the discovery of numerous novel operating regimes, offering significantly improved laser performance. In this Topical Review, we summarise the main steady-state pulse dynamics reported to date through cavity dispersion engineering, including average solitons, dispersion-managed solitons, dissipative solitons, giant-chirped pulses and similaritons. Characteristic features and the stabilisation mechanism of each regime are described, supported by numerical modelling, in addition to the typical performance and limitations. Opportunities for further pulse energy scaling are discussed, in addition to considering other recent advances including automated self-tuning cavities and fluoride-fibre-based mid-infrared mode-locked lasers.
机译:模式锁定的光纤激光器是超短脉冲的重要来源,其中通过周期性幅度和相位演进的平衡来实现稳定的脉冲产生。除了诸如滤波之类的耗散过程之外,还揭示了一系列不同的腔脉冲动力学,从分散和非线性之间的相互作用产生。这导致了许多新颖操作制度的发现,提供了显着改善的激光性能。在本次要审查中,我们总结了通过空腔色散工程报告的主要稳态脉冲动力学,包括普通孤子,分散管理的孤子,耗散孤子,巨型啁啾脉冲和相似性。除了典型的性能和限制之外,通过数值建模描述了每个制度的特征特征和稳定机制。除了考虑到包括自动自调节空腔和基于氟化物 - 纤维的中红外模式锁定激光器的其他最近的进展之外,还讨论了进一步脉冲能量缩放的机会。

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