Forbes Ruaridh, Hockett Paul, Lausten Rune
Opt Lett. 2022 May 15;47(10):2410-2413. doi: 10.1364/OL.457070.
The recent advances in femtosecond vacuum UV (VUV) pulse generation, pioneered by the work of Noack et al., has enabled new experiments in ultrafast time-resolved spectroscopy. Expanding on this work, we report the generation of 60 fs VUV pulses at the 7th harmonic of Ti:sapphire with more than 50 nJ of pulse energy at a repetition rate of 1 kHz. The 114.6 nm pulses are produced using non-collinear four-wave difference-frequency mixing in argon. The non-collinear geometry increases the phase-matching pressure, and results in a conversion efficiency of ∼10 from the 200 nm pump beam. The VUV pulses are pre-chirp-compensated for material dispersion with xenon, which has negative dispersion in this wavelength range, thus allowing almost transform-limited pulses to be delivered to the experimental chamber.
由诺阿克等人的工作开创的飞秒真空紫外(VUV)脉冲产生技术的最新进展,使得超快时间分辨光谱学领域开展新实验成为可能。在此工作基础上,我们报告了在钛宝石激光器的七次谐波处产生60飞秒的真空紫外脉冲,脉冲能量超过50纳焦,重复频率为1千赫兹。114.6纳米的脉冲是利用氩气中的非共线四波差频混频产生的。非共线几何结构增加了相位匹配压力,使得200纳米泵浦光束的转换效率达到约10%。利用氙气对真空紫外脉冲进行预啁啾补偿以消除材料色散,氙气在该波长范围内具有负色散,从而能够将几乎接近变换极限的脉冲传输到实验腔室。