Gierschke P, Grebing C, Abdelaal M, Lenski M, Buldt J, Wang Z, Heuermann T, Mueller M, Gebhardt M, Rothhardt J, Limpert J
Opt Lett. 2022 Jul 15;47(14):3511-3514. doi: 10.1364/OL.462647.
We report on the generation of GW-class peak power, 35-fs pulses at 2-µm wavelength with an average power of 51 W at 300-kHz repetition rate. A compact, krypton-filled Herriott-type cavity employing metallic mirrors is used for spectral broadening. This multi-pass compression stage enables the efficient post compression of the pulses emitted by an ultrafast coherently combined thulium-doped fiber laser system. The presented results demonstrate an excellent preservation of the input beam quality in combination with a power transmission as high as 80%. These results show that multi-pass cell based post-compression is an attractive alternative to nonlinear spectral broadening in fibers, which is commonly employed for thulium-doped and other mid-infrared ultrafast laser systems. Particularly, the average power scalability and the potential to achieve few-cycle pulse durations make this scheme highly attractive.
我们报告了在2微米波长处产生千兆瓦级峰值功率、35飞秒脉冲,重复频率为300千赫兹时平均功率为51瓦的情况。一个采用金属镜的紧凑型充氪赫里奥特型腔用于光谱展宽。这个多程压缩阶段能够对超快相干组合掺铥光纤激光系统发出的脉冲进行高效的后压缩。所呈现的结果表明,在高达80%的功率传输率下,输入光束质量得到了出色的保持。这些结果表明,基于多程腔的后压缩是光纤中常用的非线性光谱展宽的一种有吸引力的替代方案,后者常用于掺铥和其他中红外超快激光系统。特别是,平均功率可扩展性以及实现少周期脉冲持续时间的潜力使该方案极具吸引力。