Pronin O, Seidel M, Lücking F, Brons J, Fedulova E, Trubetskov M, Pervak V, Apolonski A, Udem Th, Krausz F
Ludwig-Maximilians-Universität München, Fakultät für Physik, Am Coulombwall, 85748 Garching, Germany.
Max-Planck-Institut für Quantenoptik, Hans-Kopfermann-Str. 1, 85748 Garching, Germany.
Nat Commun. 2015 May 5;6:6988. doi: 10.1038/ncomms7988.
Waveform-stabilized laser pulses have revolutionized the exploration of the electronic structure and dynamics of matter by serving as the technological basis for frequency-comb and attosecond spectroscopy. Their primary sources, mode-locked titanium-doped sapphire lasers and erbium/ytterbium-doped fibre lasers, deliver pulses with several nanojoules energy, which is insufficient for many important applications. Here we present the waveform-stabilized light source that is scalable to microjoule energy levels at the full (megahertz) repetition rate of the laser oscillator. A diode-pumped Kerr-lens-mode-locked Yb:YAG thin-disk laser combined with extracavity pulse compression yields waveform-stabilized few-cycle pulses (7.7 fs, 2.2 cycles) with a pulse energy of 0.15 μJ and an average power of 6 W. The demonstrated concept is scalable to pulse energies of several microjoules and near-gigawatt peak powers. The generation of attosecond pulses at the full repetition rate of the oscillator comes into reach. The presented system could serve as a primary source for frequency combs in the mid infrared and vacuum UV with unprecedented high power levels.
波形稳定的激光脉冲作为频率梳和阿秒光谱学的技术基础,彻底改变了对物质电子结构和动力学的探索。它们的主要来源,锁模掺钛蓝宝石激光器和掺铒/镱光纤激光器,输出能量为几纳焦耳的脉冲,这对于许多重要应用来说是不够的。在这里,我们展示了一种波形稳定的光源,它可以在激光振荡器的全(兆赫兹)重复频率下扩展到微焦耳能量水平。一个二极管泵浦的克尔透镜锁模Yb:YAG薄片激光器与腔外脉冲压缩相结合,产生了波形稳定的少周期脉冲(7.7飞秒,2.2个周期),脉冲能量为0.15微焦耳,平均功率为6瓦。所展示的概念可扩展到几微焦耳的脉冲能量和接近千兆瓦的峰值功率。在振荡器的全重复频率下产生阿秒脉冲已成为可能。所提出的系统可以作为中红外和真空紫外波段具有前所未有的高功率水平的频率梳的主要光源。