Gao Yongxi, Guo Jie, Huang Yuguang, Gao Zichen, Gan Zebiao, Tu Zhihua, Liang Xiaoyan, Li Ruxin
Opt Lett. 2023 Oct 15;48(20):5328-5331. doi: 10.1364/OL.503761.
We demonstrate a 417 W, 175 kHz Innoslab chirped pulse amplification laser compressible to short and clean 406 fs pulse duration. A spectral bandwidth (full width at half maximum, FWHM) of ∼3 nm was maintained at full pump power, and the pulses exhibited good pulse quality in a wide tunable pulse energy range from 1.7 mJ to a maximum of 2.38 mJ. At the maximum output power, the compressed pulses were nearly pedestal free. The comprehensive effects of residual high-order dispersion from the front end, the gain shaping effects of the amplifier, and the slight mismatch of third-order dispersion (TOD) between the stretcher (CFBG) and the gating compressor, along with the small nonlinear phase shift accumulated in the amplifier, could have facilitated the high pulse quality. To the best of our knowledge, this is the shortest pulse duration from the Innoslab amplifiers at hundreds of watts average power in the millijoule energy regime.
我们展示了一台417 W、175 kHz的Innoslab啁啾脉冲放大激光器,其可压缩至短而纯净的406 fs脉冲持续时间。在全泵浦功率下,光谱带宽(半高全宽,FWHM)保持在约3 nm,并且在1.7 mJ至最大2.38 mJ的宽可调脉冲能量范围内,脉冲展现出良好的脉冲质量。在最大输出功率时,压缩脉冲几乎没有基座。前端残余高阶色散、放大器的增益整形效应、展宽器(CFBG)与选通压缩器之间三阶色散(TOD)的轻微失配,以及放大器中积累的小非线性相移的综合作用,可能有助于实现高脉冲质量。据我们所知,这是在毫焦能量范围内数百瓦平均功率下Innoslab放大器产生的最短脉冲持续时间。