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High-power multi-megahertz source of waveform-stabilized few-cycle light

机译:波形稳定的几个周期光的高功率几兆赫兹光源

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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 mJ and an average power of 6W. 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.
机译:波形稳定的激光脉冲作为频率梳和阿秒光谱的技术基础,彻底改变了电子结构和物质动力学的探索。它们的主要光源是锁模掺钛蓝宝石激光器和掺//掺fiber光纤激光器,它们产生的脉冲具有几纳焦的能量,对于许多重要的应用来说是不够的。在这里,我们介绍了可在激光振荡器的完整(兆赫兹)重复频率下扩展到微焦耳能级的波形稳定光源。二极管泵浦的Kerr透镜锁模Yb:YAG薄盘激光器与腔外脉冲压缩相结合可产生波形稳定的几个周期脉冲(7.7 fs,2.2个周期),脉冲能量为0.15 mJ,平均功率为6W。演示的概念可扩展到几个微焦耳的脉冲能量和近千兆瓦的峰值功率。以振荡器的全重复率产生阿秒脉冲的过程已经实现。提出的系统可以用作中红外和真空UV中频率梳的主要来源,具有前所未有的高功率水平。

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