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首页> 外文期刊>The Journal of Chemical Physics >Ultrafast probing of ejection dynamics of Rydberg atoms and molecular fragments from electronically excited helium nanodroplets
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Ultrafast probing of ejection dynamics of Rydberg atoms and molecular fragments from electronically excited helium nanodroplets

机译:超快探测电子激发氦纳米液滴中里德堡原子和分子碎片的射出动力学

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摘要

The ejection dynamics of Rydberg atoms and molecular fragments from electronically excited helium nanodroplets are studied with time-resolved extreme ultraviolet ion imaging spectroscopy. At excitation energies of 23.6 ± 0.2 eV, Rydberg atoms in n = 3 and n = 4 states are ejected on different time scales and with significantly different kinetic energy distributions. Specifically, n = 3 Rydberg atoms are ejected with kinetic energies as high as 0.85 eV, but their appearance is delayed by approximately 200 fs. In contrast, n = 4 Rydberg atoms appear within the time resolution of the experiment with considerably lower kinetic energies. Major features in the Rydberg atom kinetic energy distributions for both principal quantum numbers can be described within a simple elastic scattering model of localized perturbed atomic Rydberg atoms that are expelled from the droplet due to their repulsive interaction with the surrounding helium bath. Time-dependent kinetic energy distributions of He_2 ~+ and He_3 ~+ ions are presented that support the formation of molecular ions in an indirect droplet ionization process and the ejection of neutral Rydberg dimers on a similar time scale as the n 3 Rydberg atoms.
机译:利用时间分辨的极端紫外离子成像光谱研究了电子激发的氦纳米液滴中Rydberg原子和分子碎片的喷射动力学。在23.6±0.2 eV的激发能下,n = 3和n = 4态的里德堡原子在不同的时间尺度上以明显不同的动能分布射出。具体来说,n = 3的里德堡原子以高达0.85 eV的动能射出,但它们的出现被延迟了约200 fs。相反,在实验的时间分辨率内,n = 4个里德堡原子出现,动能大大降低。两个主要量子数的Rydberg原子动能分布的主要特征可以在局部微扰原子Rydberg原子的简单弹性散射模型中描述,该原子由于与周围氦浴的排斥作用而从液滴中排出。提出了随时间变化的He_2〜+和He_3〜+离子动能分布,这些离子支持间接液滴电离过程中分子离子的形成以及中性Rydberg二聚体的喷射,其时间尺度与n 3 Rydberg原子相似。

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