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The rotational and vibrational dynamics of argon-methane. II. Experiment and comparison with theory

机译:氩气甲烷的旋转和振动动力学。二。实验与理论比较

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Presented here is a detailed comparison between the experimental near infrared spectrum of argon-methane and the results of a theoretical calculation based upon the methods described in a companion paper, hereafter referred to as paper I [T. G. A. Heijmen et al., J. Chem. Phys. 110 5639 (1999), preceding paper]. Many of the bands in the spectrum are easily assigned directly from this comparison. The spectrum is shown to be highly sensitive to the anisotropy of the argon-methane potential surface and the agreement with the ab initio spectrum, although not quantitative, is very good. The predissociation linewidths observed in the experimental spectra are found to be strongly dependent upon the symmetry of the excited state. Symmetry considerations place restrictions on the final rotational states that can be accessed, possibly explaining the differences in the lifetimes.
机译:本文介绍的是氩气甲烷的近红外光谱实验与基于随附论文(以下称为论文I [T. G.A.Heijmen et al。,J.Chem。物理110 5639(1999),先前的论文]。可以直接从此比较中轻松分配频谱中的许多频段。该光谱显示出对氩-甲烷势能表面的各向异性高度敏感,并且与从头算光谱的一致性(尽管不是定量的)非常好。发现在实验光谱中观察到的预离解线宽强烈依赖于激发态的对称性。对称性考虑因素限制了可以访问的最终旋转状态,这可能解释了使用寿命的差异。

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