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High-quality energy-scalable femtosecond pulses from a fibre-based chirped pulse amplification system via adaptive pulse shaping

机译:通过自适应脉冲整形从基于光纤的啁啾脉冲放大系统获得高质量的能量可扩展飞秒脉冲

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摘要

Diode-pumped ytterbium-doped fibre lasers, coupled with the chirped-pulse amplification (CPA) technique, are promising for realising compact ultrafast laser systems with variable repetition rates. However, energy scaling in such a system is nontrivial, as the accumulation of high-order material dispersion and nonlinear phase modulation degrade the pulse quality upon compression. In our previous work [1], we demonstrated the generation of high-fidelity femtosecond pulses with a repetition rate of 50MHz in a fibre CPA system through the use of an adaptive pulse pre-shaping technique that compensated for high-order dispersion in fibres with a total length of 12m and a B-integral of up to 1.6 pi rad. In this paper, we show the versatility of adaptive pulse pre-shaping to generate a high-quality pulse train with a variable repetition rate and energy in a fibre CPA system consisting of a 1km fibre stretcher with a B-integral reaching 2.2 pi rad
机译:二极管泵浦掺tter光纤激光器与the脉冲放大(CPA)技术相结合,有望实现具有可变重复率的紧凑型超快激光器系统。但是,由于高阶材料色散和非线性相位调制的积累会降低压缩后的脉冲质量,因此在这种系统中进行能量缩放并不容易。在我们以前的工作中[1],我们演示了通过使用自适应脉冲预成形技术来补偿光纤CPA系统中具有50MHz重复频率的高保真飞秒脉冲的产生,该技术可以补偿光纤中的高阶色散。总长度小于12m,B积分最大为1.6 pi rad。在本文中,我们展示了在包含1 km光纤拉伸器和B积分达到2.2 pi rad的光纤CPA系统中,自适应脉冲预成形的多功能性,可以生成具有可变重复率和能量的高质量脉冲序列

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