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High-energy femtosecond fiber lasers based on pulse propagation at normal dispersion

机译:基于正常色散下脉冲传播的高能飞秒光纤激光器

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The generation and stable propagation of ultrashort optical pulses tend to be limited by accumulation of excessive nonlinear phase shifts. The limitations are particularly challenging in fiber-based devices, and as a result, short-pulse fiber lasers have lagged behind bulk solid-state lasers in performance. This article will review several new modes of pulse formation and propagation in fiber lasers. These modes exist with large normal cavity dispersion, and so are qualitatively distinct from the soliton-like processes that have been exploited effectively in modern femtosecond lasers but which are also quite limiting. Self-similar evolution can stabilize high-energy pulses in fiber lasers, and this leads to order-of-magnitude increases in performance: fiber lasers that generate 10 nJ pulses of 100 fs duration are now possible. Pulse-shaping based on spectral filtering of a phase-modulated pulse yields similar performance, from lasers that have no intracavity dispersion control. These new modes feature highly-chirped pulses in the laser cavity, and a theoretical framework offers the possibility of unifying our view of normal-dispersion femtosecond lasers. Instruments based on these new pulse-shaping mechanisms offer performance that is comparable to that of solid-state lasers but with the major practical advantages of fiber.
机译:超短光脉冲的产生和稳定传播往往会受到过多非线性相移的累积的限制。这些限制在基于光纤的设备中特别具有挑战性,因此,短脉冲光纤激光器的性能落后于大容量固态激光器。本文将回顾光纤激光器中脉冲形成和传播的几种新模式。这些模式存在大的法向腔色散,因此在质量上与现代飞秒激光器中已被有效利用的孤子状过程截然不同,但其局限性也很大。自相似的演化可以稳定光纤激光器中的高能脉冲,从而导致性能的数量级提高:现在可以生成持续时间为100 fs的10 nJ脉冲的光纤激光器。基于无腔内色散控制的激光器,基于调相脉冲的频谱滤波的脉冲整形可产生类似的性能。这些新模式在激光腔中具有高度chi脉冲,并且理论框架为统一我们对正色散飞秒激光器的观点提供了可能性。基于这些新的脉冲整形机制的仪器可提供与固态激光器相当的性能,但具有光纤的主要实用优势。

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