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首页> 外文期刊>The Journal of Chemical Physics >Photoelectron angular distributions as a probe of alignment evolution in a polyatomic molecule: Picosecond time- and angle-resolved photoelectron spectroscopy of S_1 para-difluorobenzene
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Photoelectron angular distributions as a probe of alignment evolution in a polyatomic molecule: Picosecond time- and angle-resolved photoelectron spectroscopy of S_1 para-difluorobenzene

机译:光电子角分布作为多原子分子中取向演化的探针:S_1对二氟苯的皮秒时间分辨和角度分辨光电子能谱

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摘要

We demonstrate that picosecond time-resolved photoelectron angular distributions (PADs) provide a sensitive probe of an evolving alignment in an excited polyatomic molecule. Such an evolving alignment can be caused by pure rotational recurrences or by rotation-vibration coupling. If a molecule is chosen for which the rotational recurrence times are well-known the method provides a means of establishing the mechanism of intramolecular vibrational energy redistribution (IVR). In the case of S_1 para-difluorobenzene we observe striking alignment changes as a function of pump-probe time delay which we attribute to rotationally mediated IVR.
机译:我们证明了皮秒时间分辨的光电子角分布(PADs)提供了一个激发的多原子分子中不断发展的排列的敏感探针。这种不断变化的对准可能是由于单纯的旋转重复或旋转振动耦合引起的。如果选择旋转重复时间众所周知的分子,则该方法提供了建立分子内振动能量重新分布(IVR)机理的手段。在S_1对二氟苯的情况下,我们观察到显着的对准变化是泵探针时间延迟的函数,这归因于旋转介导的IVR。

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