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Ultrafast high energy amplifiers beyond the B-integral limit

机译:超越B积分极限的超快高能放大器

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High average power single-mode fiber lasers have attracted significant attention as alternatives to conventional solid-state lasers owing to their relative high brightness, compactness and robustness. Likewise the turn-key operation of industrially qualified ultrafast fiber oscillators is well established. In recent years the convergence of reliable ultrafast fiber oscillators, high brightness pump diodes and high power fiber amplifiers has enabled ultrafast fiber lasers to surpass ultrafast solid-state lasers in terms of average power. While fiber lasers have generally not been able to match the ultrashort pulse energies produced by solid-state lasers, careful management of nonlinearities can overcome the conventional B-integral limit of ? thereby permitting stable operation of practical ultrafast fiber lasers with pulse energies approaching the milli-Joule level. Here we review modes of nonlinear propagation in fibers which have enabled increases in ultrashort pulse energies from nano-Joule to milli-Joule levels, namely: solitons, similaritons and cubicons. As an example of a practical high energy ultrafast fiber laser, we demonstrate a cubicon Yb fiber chirped pulse amplification system producing 550 fs pulses with 50 μJ at > 15 W.
机译:高平均功率单模光纤激光器由于具有相对较高的亮度,紧凑性和鲁棒性而成为常规固态激光器的替代品,引起了广泛的关注。同样,工业上合格的超快光纤振荡器的交钥匙操作也已确立。近年来,可靠的超快光纤振荡器,高亮度泵浦二极管和高功率光纤放大器的融合使超快光纤激光器的平均功率超过了超快固态激光器。虽然光纤激光器通常无法匹配固态激光器产生的超短脉冲能量,但是仔细管理非线性可以克服传统的B积分极限。从而可以稳定实用的脉冲能量接近毫焦耳水平的超快光纤激光器。在这里,我们回顾了光纤中非线性传播的模式,这些模式已经使超短脉冲能量从纳米焦耳级提高到毫焦耳级,即:孤子,相似子和立方子。作为实用的高能超快光纤激光器的示例,我们演示了一个立方光Yb光纤chi脉冲放大系统,该系统在> 15 W时产生550 fs脉冲和50μJ脉冲。

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