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Rovibrational interactions in linear triatomic molecules: a theoretical study in curvilinear vibrational coordinates

机译:线性三原子分子中的振动振动相互作用:曲线振动坐标的理论研究

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摘要

Variational solution of the rovibrational problem in curvilinear vibrational coordinates has been implemented and used to investigate the nuclear motions in several linear triatomic molecules, like HCN, OCS, and HCP. The dependence of the rovibrational energy levels on the rotational quantum numbers and the l-doubling has been studied. Two approximations to the rovibrational Hamiltonian have been examined, depending on the level of truncation of the potential energy operator. It turns out that the truncation after the fifth order in the potential is sufficient to produce vibrational energies of high accuracy. An interesting feature of the present formulation of the problem in terms of the curvilinear vibrational coordinates is the explanation of the l-doubling of the rovibrational levels, which in this picture is interpreted as the result of the inequivalency of the average rotational constants in mutually perpendicular planes, rather than as the effect of the Coriolis-type interactions between the vibrational and rotational motions. The present theoretical results are compared with the available experimental data from high-resolution spectroscopy, as well as with other ab initio calculations.
机译:已经实现了曲线振动坐标中旋​​转振动问题的变分解,并将其用于研究几个线性三原子分子(如HCN,OCS和HCP)中的核运动。研究了旋转振动能级对旋转量子数和l加倍的依赖性。根据势能算符的截断水平,已研究了旋转振动哈密顿量的两个近似值。事实证明,电势在五阶之后的截断足以产生高精度的振动能量。关于曲线振动坐标的问题的当前表示形式的一个有趣特征是旋转振动水平的l倍增的解释,在此图片中,这被解释为相互垂直的平均旋转常数不相等的结果。平面,而不是振动和旋转运动之间的科里奥利式相互作用的影响。本理论结果与高分辨率光谱学可获得的实验数据以及其他从头算计算进行了比较。

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