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Theoretical study of the time-resolved photoelectron spectrum of Na_2F: effects of thermal initial conditions

机译:Na_2F时间分辨光电子能谱的理论研究:热初始条件的影响

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摘要

The excited state dynamics of the Na_2F cluster initiated by a femtosecond laser pulse is studied considering a thermally excited initial sample. Within a pump-probe set-up, the time-dependent photoelectron spectrum is calculated, which is shown to be a sensitive tool to study intramolecular motion of the cluster. Temperature effects are taken into account through thermal averaging over the time-dependent spectra obtained from different initial vibrational states of the cluster. The nuclear motion upon laser excitation is described by full-dimensional quantum wavepacket propagation using explicit, realistic pump and probe pulses. The characteristic features of the time-resolved photoelectron spectra of the Na_2F cluster, identified as due to periodic bending motion of the cluster as well as to the excitation of the stretching mode, are found to be robust against increasing vibrational temperature of the cluster beam. This finding is important for possible future experiments.
机译:飞秒激光脉冲引发的Na_2F团簇的激发态动力学研究是考虑热激发的初始样品。在泵浦探针装置中,计算了随时间变化的光电子谱,这显示它是研究簇内分子运动的灵敏工具。通过对从群集的不同初始振动状态获得的随时间变化的光谱进行热平均,可以考虑温度效应。激光激发时的核运动是通过使用明确,现实的泵浦和探测脉冲的全尺寸量子波包传播来描述的。发现Na_2F团簇的时间分辨光电子光谱的特征,被认为是由于该团簇的周期性弯曲运动以及由于拉伸模式的激发,具有抵抗团簇束振动温度升高的鲁棒性。这一发现对将来可能进行的实验很重要。

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