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Kerr-lens mode-locking of directly LD pumped Yb:YAG laser

机译:直接LD泵浦Yb:YAG激光器的Kerr-lens锁模

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Yb:YAG is an attractive material for high-power and ultra-short pulse laser because of its high quantum efficiency exceeding 90 % and wide gain spectrum larger than about 10 nm. Our research is development of high-average power Kerr-lens mode-locked Yb:YAG laser. A Kerr-lens mode-locked laser has been designed with thin-rod Yb:YAG for high average power oscillator. Thin and long Yb:YAG crystal is used for gain medium and it was pumped directly by stacked LD bar. The Z-folded cavity was designed by simple ABCD matrix law. An additive Kerr-medium is used for stable mode-locked operation instead of semiconductor saturable absorber mirrors (SESAM), because Kerr-effect of the Yb:YAG crystal is weak. SF57 glass is used to stabilize the mode-locked oscillation to decrease the intra-cavity loss to increase the oscillation bandwidth for transform limited pulse generation. The Group Delay Dispersion (GDD) of the optical element in the laser cavity was compensated by SF10 prism pair. The output is expected to be the transform limited ultrashort pulses of sub 200 fs width with a high average output power around 60 W with 200 W pump power.
机译:Yb:YAG是一种用于大功率和超短脉冲激光的有吸引力的材料,因为其高量子效率超过90%,并且宽增益谱大于约10 nm。我们的研究是开发高平均功率Kerr透镜锁模Yb:YAG激光器。 Kerr-lens锁模激光器设计有细杆Yb:YAG用于高平均功率振荡器。细长的Yb:YAG晶体用作增益介质,并直接由堆叠的LD棒抽运。通过简单的ABCD矩阵定律设计Z形腔。由于Yb:YAG晶体的Kerr效应较弱,因此添加的Kerr介质用于稳定的锁模操作而不是半导体可饱和吸收镜(SESAM)。 SF57玻璃用于稳定锁模振荡,以减少腔内损耗,增加振荡带宽,以产生变换受限的脉冲。激光腔中光学元件的群时延色散(GDD)由SF10棱镜对补偿。预期输出为200 fs以下宽度的受变换限制的超短脉冲,泵浦功率为200 W时,平均输出功率约为60W。

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