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Anharmonicity and tunneling effects in revisited vibrational 0(1 s) photoelectron spectrum of water gas phase

机译:再探水气相的振动0(1 s)光电子能谱中的非谐和隧穿效应

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摘要

The authors have revisited the description of the core-hole ionization dynamics of the oxygen atom in water by re-exploiting the high-resolution, vibrationally resolved, XPS photoelectron spectrum of gas phase at the O(1s) edge. The agreement between theory and experiments is mainly controlled by (i) the description of the tunneling behavior near the barrier top (linear H-O-H conformation) of wave functions with high vibrational quanta, and (ii) the relative displacement of the potential-energy minimum of the O(ls) final state with respect to the ground state one. Accurate change in bond angle between the neutral and core-ionized states is essential to account for the Franck-Condon factors. The O(1s) photoelectron spectrum of water is well reproduced by the molecular ab initio calculations based on density functional theory and Franck-Condon factors calculations in a double-well (2 x W) simulation of the bending motion.
机译:作者通过重新利用O(1s)边缘的高分辨率,振动分辨的气相XPS光电子能谱,重新描述了水中氧原子的核孔电离动力学。理论与实验之间的一致性主要受(i)对具有高振动量子的波函数的势垒顶部附近的隧穿行为(线性HOH构型)的描述,以及(ii)势能最小值的相对位移的控制。相对于基态1的O(ls)最终状态。中性和核心电离态之间键角的准确变化对于解释弗兰克-康登因子至关重要。水的O(1s)光电子能谱通过基于双官能(2 x W)弯曲运动的密度泛函理论和Franck-Condon因子计算的分子从头算式得到了很好的再现。

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