论文标题

液体中的高谐波产生很少的循环脉冲:激光 - 脉冲持续时间对截止能量的影响

High-harmonic generation in liquids with few-cycle pulses: effect of laser-pulse duration on the cut-off energy

论文作者

Mondal, Angana, Waser, Benedikt, Balciunas, Tadas, Neufeld, Ofer, Yin, Zhong, Tancogne-Dejean, Nicolas, Rubio, Angel, Wörner, Hans Jakob

论文摘要

液体中的高谐波产生(HHG)为液相的动力学方面的动力学研究开辟了新的机会。在气相HHG中,通常使用很少的周期脉冲来产生孤立的attosent脉冲并扩展截止能量。在这里,我们通过连续调整从多型驾驶员的脉冲持续时间从多二循环到亚二循环型制度来研究HHG在包括水和几种醇在内的HHG的性质。与气相相似,我们观察到从离散的奇数谐波到连续的极端粉丝发射的过渡。但是,截止能量显示完全独立于脉冲持续时间。大型簇中HHG的Ab-Initio模拟证实了这一观察结果。我们的结果支持这样的观念:截止能量是液体的基本特性,与驾驶 - 脉冲特性无关。结合最近报道的截止波长独立性,这些结果证实了HHG对液体中慢电子的平均无途径的直接敏感性。我们的结果还表明,很少有周期的中红外激光脉冲是适合从液体中产生分离的attosent脉冲的驱动因素。

High-harmonic generation (HHG) in liquids is opening new opportunities for attosecond light sources and attosecond time-resolved studies of dynamics in the liquid phase. In gas-phase HHG, few-cycle pulses are routinely used to create isolated attosecond pulses and to extend the cut-off energy. Here, we study the properties of HHG in liquids, including water and several alcohols, by continuously tuning the pulse duration of a mid-infrared driver from the multi- to the sub-two-cycle regime. Similar to the gas phase, we observe the transition from discrete odd-order harmonics to continuous extreme-ultraviolet emission. However, the cut-off energy is shown to be entirely independent of the pulse duration. This observation is confirmed by ab-initio simulations of HHG in large clusters. Our results support the notion that the cut-off energy is a fundamental property of the liquid, independent of the driving-pulse properties. Combined with the recently reported wavelength-independence of the cutoff, these results confirm the direct sensitivity of HHG to the mean-free paths of slow electrons in liquids. Our results additionally imply that few-cycle mid-infrared laser pulses are suitable drivers for generating isolated attosecond pulses from liquids.

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