Laboratoire de Physique Quantique, Faculté des Sciences de Monastir, Avenue de l'Environnement 5019, Monastir, Tunisie.
J Phys Chem A. 2011 Dec 8;115(48):14045-53. doi: 10.1021/jp204058y. Epub 2011 Nov 14.
The diabatic and adiabatic potential-energy curves and permanent and transition dipole moments of the highly excited states of the CaH(+) molecular ion have been computed as a function of the internuclear distance R for a large and dense grid varying from 2.5 to 240 au. The adiabatic results are determined by an ab initio approach involving a nonempirical pseudopotential for the Ca core, operatorial core-valence correlation, and full valence configuration interaction. The molecule is thus treated as a two-electron system. The diabatic potential energy curves have been calculated using an effective metric combined to the effective Hamiltonian theory. The diabatic potential-energy curves and their permanent dipole moments for the (1)∑(+) symmetry are examined and corroborate the high imprint of the ionic state in the adiabatic representation. Taking the benefit of the diabatization approach, correction of hydrogen electron affinity was taken into account leading to improved results for the adiabatic potentials but also the permanent and transition electric dipole moments.
已计算 CaH(+)分子离子的高激发态的非绝热和绝热势能曲线以及永久和跃迁偶极矩作为核间距 R 的函数,使用了一个从 2.5 到 240 au 的大而密集的网格。绝热结果由涉及 Ca 核的非经验赝势、算子核价相关和全价组态相互作用的从头算方法确定。因此,分子被视为二电子系统。使用与有效哈密顿理论相结合的有效度量来计算非绝热势能曲线。检查了(1)∑(+)对称性的非绝热势能曲线及其永久偶极矩,并证实了离子态在绝热表示中的高度影响。利用二面化方法,考虑了对氢电子亲和能的修正,从而提高了绝热势能的结果,同时也提高了永久和跃迁电偶极矩的结果。