High Resolution Electronic Spectroscopy of Hydroxyl-Rare Gas Complexes

Bor-Chen Chang, J. Williamson, J. R. Dunlop, T. Miller
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Abstract

For many years, scientists have studied the spectroscopy of van der Waals complexes in past to understand intermolecular interactions and potential energy surfaces. There are abundant experiments and theoretical calculations on the closed-shell van der Waals complexes.1,2 Relatively speaking, the open-shell complexes have attracted much less attention until recently. The sparsity of information is due to both the difficulty of preparing the species and the complexity of their spectroscopy, which involves both unquenched electronic orbital and spin angular momenta. In the past four years, there have been several experimental and theoretical papers centered on Ar•OH/D and Ne•OH/D.3,4 However, except for one microwave experiment5 the previous works lack information about fine and hyperfine structure due to the resolution limit of dye laser used in the laser-induced fluorescence (LIF) studies.
羟基-稀有气体配合物的高分辨率电子光谱
多年来,科学家们一直在研究范德华配合物的光谱,以了解分子间的相互作用和势能表面。关于闭壳范德华配合物有大量的实验和理论计算。相对而言,开壳配合物直到最近才引起人们的注意。信息的稀疏性是由于制备的困难和光谱的复杂性,这涉及到未淬灭的电子轨道和自旋角动量。在过去的四年里,有几篇以Ar•OH/D和Ne•OH/D为中心的实验和理论论文。3,4然而,由于激光诱导荧光(LIF)研究中使用的染料激光器的分辨率限制,除了一个微波实验外,以往的工作缺乏关于精细和超精细结构的信息。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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