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Single ionization of atoms in intense laser pulses: Evolution from multiphoton to tunnel ionization

机译:强激光脉冲中原子的单电离:从多光子到隧道电离的演变

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摘要

We present results of high resolution fully differential measurements on single ionization of He, Ne, and Ar by 7-25 fs linearly polarized 800nm laser pulses at intensities of up to 2.1015 W/cm2. Using a 'Reaction-Microscope' we were able to trace signatures of multiphoton ionization deep into the tunnelling regime. Surprisingly, in the low-energy electron spectra we observed several features (absence of the ponderomotive shifts, splitting of the peaks, their degeneration for few-cycle laser pulses) typical for resonantly-enhanced ionization. Other remarkable features, as the sharp cusp-like momentum distributions in the direction perpendicular to the laser field or the observed minima at zero longitudinal momentum for He and Ne, can be reproduced by semiclassical models, where the electron motion in the combined laser and Coulomb field is treated classically after the tunnelling.
机译:我们介绍了通过7-25 fs线性偏振800nm激光脉冲以高达2.1015 W / cm2的强度对He,Ne和Ar进行单电离的高分辨率全差分测量结果。使用“反应显微镜”,我们能够追踪多光子电离的特征,并深入到隧穿状态。出乎意料的是,在低能电子光谱中,我们观察到了共振增强电离所特有的几个特征(不存在质动力移动,峰分裂,短周期激光脉冲的退化)。其他显着特征,例如垂直于激光场的尖锐的动量分布或He和Ne在零纵向动量处观察到的极小值,可以通过半经典模型来再现,其中在激光和库仑组合下电子运动隧道掘进后,对油田进行了经典处理。

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