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Attosecond streaking measurement of extreme ultraviolet pulses using a long-wavelength electric field

机译:使用长波电场对极端紫外线脉冲进行亚秒条纹测量

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摘要

Long-wavelength lasers have great potential to become a new-generation drive laser for tabletop coherent light sources in the soft X-ray region. Because of the significantly low conversion efficiency from a long-wavelength light field to high-order harmonics, their pulse characterization has been carried out by measuring the carrier-envelope phase and/or spatial dependences of high harmonic spectra. However, these photon detection schemes, in general, have difficulty in obtaining information on the spectral phases, which is crucial to determine the temporal structures of high-order harmonics. Here, we report the first attosecond streaking measurement of high harmonics generated by few-cycle optical pulses at 1.7 μm from a BiB3O6–based optical parametric chirped-pulse amplifier. This is also the first demonstration of time-resolved photoelectron spectroscopy using high harmonics from a long-wavelength drive laser other than Ti:sapphire lasers, which paves the way towards ultrafast soft X-ray photoelectron spectroscopy.
机译:长波长激光器具有成为软X射线区域中台式相干光源的新一代驱动激光器的巨大潜力。由于从长波长光场到高次谐波的转换效率非常低,因此已经通过测量高谐波谱的载波-包络相位和/或空间相关性来进行脉冲表征。但是,这些光子检测方案通常难以获得有关光谱相位的信息,这对于确定高次谐波的时间结构至关重要。在这里,我们报告了基于BiB3O6的光学参量chi脉冲放大器在1.7µμm处的几个周期的光脉冲产生的高次谐波的第一次亚秒条纹测量。这也是时间分辨光电子能谱的首次演示,该技术使用了Ti:蓝宝石激光器以外的长波长驱动激光器产生的高次谐波,为超快软X射线光电子能谱铺平了道路。

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