Pouysegur Julien, Weichelt Birgit, Guichard Florent, Zaouter Yoann, Hönninger Clemens, Mottay Eric, Druon Frédéric, Georges Patrick
Opt Express. 2016 May 2;24(9):9896-904. doi: 10.1364/OE.24.009896.
A hybrid-system approach using a low-gain Yb:YAG single crystal booster amplifier behind a state-of-the-art industrial high-power femtosecond fiber system is studied to significantly increase the output pulse energy of the fiber amplifier. With this system, more than 60 W of average power is demonstrated at 100 kHz for pulse duration of 400 fs, corresponding to an energy per pulse of 600 µJ. Reducing the repetition rate, the energy is increased up to 2.5 mJ (before compression), which corresponds to the limitation due to laser damage threshold of the optical coatings. To scale further the energy, passive divided-pulse amplification is then implemented at the entrance of the bulk amplifier. Using this geometry, a safe nominal operating point is presented with output pulse energies of 3 mJ before and 2.3 mJ after compression and with a pulse duration of 520 fs, corresponding to a peak power of 4.4 GW.
研究了一种混合系统方法,即在最先进的工业高功率飞秒光纤系统之后使用低增益Yb:YAG单晶放大放大器,以显著提高光纤放大器的输出脉冲能量。使用该系统,在100 kHz、脉冲持续时间为400 fs时,平均功率超过60 W,对应每个脉冲能量为600 μJ。降低重复频率,能量增加到2.5 mJ(压缩前),这对应于由于光学涂层的激光损伤阈值所导致的限制。为了进一步扩大能量,在体放大器入口处采用了被动分脉冲放大。采用这种结构,给出了一个安全的标称工作点,压缩前输出脉冲能量为3 mJ,压缩后为2.3 mJ,脉冲持续时间为520 fs,对应峰值功率为4.4 GW。