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Low-Energy Photoelectron Angular Distributions of Above-Threshold Ionization of Atoms and Molecules in Strong Laser Fields

机译:在强激光场中原子和分子的阈值以上电离的低能光电子角分布

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摘要

We present high-resolution fully differential experimental data on low-energy photoelectron angular distributions (PADs) of above-threshold ionization of atoms (Xe), and diatomic (H$_2$ , O$_2$) and triatomic (CO $_2$) molecules at the same Keldysh parameter (∼1.4) in near-infrared strong laser fields (25 fs, 795 nm). We observe that the electron zero longitudinal momentum distributions (along laser-polarization direction) show a feature of pronounced “dip” or “peak” for those targets. However, the low-energy PADs are similar, even though the binding energy and electronic core structure are very different. The PADs show that the dominant angular momentum of zero-order above-threshold ionization (E < 0.5 eV) is L = 4 (ng Rydberg states). The experimental observations challenge the current qualitative models that are now only available for atoms. In the end, we discuss the role of Coulomb focusing and the effect of the electron longitudinal momentum on the transverse-momentum distribution.
机译:我们提供了关于原子(Xe)和双原子(H $ _2 $,O $ _2 $)和三原子(CO $ _2 $的阈值以上电离的低能光电子角分布(PAD)的高分辨率全差分实验数据)分子在近红外强激光场(25 fs,795 nm)中具有相同的Keldysh参数(〜1.4)。我们观察到,对于那些目标,电子零纵向动量分布(沿激光偏振方向)显示出明显的“浸入”或“峰值”特征。但是,即使结合能和电子核心结构有很大不同,低能PAD还是相似的。 PAD显示零阶阈值以上电离(E <0.5 eV)的主要角动量为L = 4(ng Rydberg态)。实验观察挑战了目前仅适用于原子的当前定性模型。最后,我们讨论了库仑聚焦的作用以及电子纵向动量对横向动量分布的影响。

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