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Correlated proton-electron hole dynamics in protonated water clusters upon extreme ultraviolet photoionization

机译:极紫外光电离作用下质子化水簇中质子电子空穴的相关动力学

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The ultrafast nuclear and electronic dynamics of protonated water clusters H+(H2O)n after extreme ultraviolet photoionization is investigated. In particular, we focus on cluster cations with n?=?3, 6, and 21. Upon ionization, two positive charges are present in the cluster related to the excess proton and the missing electron, respectively. A correlation is found between the cluster's geometrical conformation and initial electronic energy with the size of the final fragments produced. For situations in which the electron hole and proton are initially spatially close, the two entities become correlated and separate in a time-scale of 20 to 40 fs driven by strong non-adiabatic effects.
机译:研究了极紫外光电离后质子化水簇H + (H 2 O) n 的超快核和电子动力学。特别地,我们集中于n = 3、6和21的簇阳离子。电离时,簇中存在两个正电荷,分别与过量的质子和丢失的电子有关。发现簇的几何构象和初始电子能量与产生的最终碎片的大小之间存在相关性。对于电子空穴和质子最初在空间上接近的情况,这两个实体在强烈的非绝热效应的驱动下,在20至40 fs的时间范围内相互关联并分离。

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