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首页> 外文期刊>Spectrochimica acta, Part A. Molecular and biomolecular spectroscopy >Spectroscopy from first principles: a breakthrough in water line assignments
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Spectroscopy from first principles: a breakthrough in water line assignments

机译:第一原理的光谱学:给水管线分配方面的突破

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Variational calculations of the spectrum of both hot and room temperature water vapor have led to a major incrase inthe number and scope of observed vibration-rotation transitions that have full quantum number assignments. The calculations are performed using high accuracy ab initio potential energy surfaces. As demonstrated, it is also necessary to consider corrections due to adiabatic effects, non-adiabatic effects and the relativistic motions of the electrons. The result of this work has been to double the number and energy range of the measured energy levels for water. New energy levels for the (010), (100), (020), (001), (110), (030), (011), (040), (050) and (060) states are presented here. Analysis of these levels and the associated transitions shows unanticipated features, including rotational difference bands, and an absence of clustering. The prospects of observing quantum monodromy in the spectrum of water are discussed.
机译:热水和室温水蒸气光谱的变化计算已导致观察到的具有完整量子数分配的振动-旋转跃迁的数量和范围大大增加。使用高精度的从头算势能面进行计算。如图所示,还必须考虑由于绝热效应,非绝热效应和电子的相对论运动引起的校正。这项工作的结果是将所测得的水能级的数量和能量范围加倍。这里介绍(010),(100),(020),(001),(110),(030),(011),(040),(050)和(060)状态的新能级。对这些水平和相关过渡的分析显示了出乎意料的特征,包括旋转差异带和不存在聚类。讨论了在水光谱中观察量子单峰的前景。

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