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Accurate ab initio determination of the adiabatic potential energy function and the Born-Oppenheimer breakdown corrections for the electronic ground state of LiH isotopologues

机译:LiH同位素分子电子基态的绝热势能函数的精确从头确定和Born-Oppenheimer击穿校正

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High level ab initio potential energy functions have been constructed for LiH in order to predict vibrational levels up to dissociation. After careful tests of the parameters of the calculation, the final adiabatic potential energy function has been composed from: (a) an ab initio nonrelativistic potential obtained at the multireference configuration interaction with singles and doubles level including a size-extensivity correction and quintuple-sextuple extrapolations of the basis, (b) a mass-velocity-Darwin relativistic correction, and (c) a diagonal Born-Oppenheimer (BO) correction. Finally, nonadiabatic effects have also been considered by including a nonadiabatic correction to the kinetic energy operator of the nuclei. This correction is calculated from nonadiabatic matrix elements between the ground and excited electronic states. The calculated vibrational levels have been compared with those obtained from the experimental data [J. A. Coxon and C. S. Dickinson, J. Chem. Phys. 134, 9378 (2004)]. It was found that the calculated BO potential results in vibrational levels which have root mean square (rms) deviations of about 6-7 cm-1 for LiH and ~3 cm-1 for LiD. With all the above mentioned corrections accounted for, the rms deviation falls down to ~1 cm -1. These results represent a drastic improvement over previous theoretical predictions of vibrational levels for all isotopologues of LiH.
机译:为了预测直至解离的振动能级,已经为LiH构建了高水平的从头开始的势能函数。经过对计算参数的仔细测试,最终的绝热势能函数由以下组成:(a)从多参考构型相互作用中获得的从头算起的非相对论势,包括单倍和双倍水平,包括大小扩展校正和五重叠加基础外推,(b)速度-达尔文相对论校正,和(c)对角Born-Oppenheimer(BO)校正。最后,还考虑了非绝热效应,方法是对原子核的动能算符进行非绝热校正。根据基态和激发电子态之间的非绝热矩阵元素来计算此校正。计算出的振动水平已经与从实验数据中获得的振动水平进行了比较[J. A. Coxon和C. S. Dickinson,J. Chem。物理134,9378(2004)]。结果发现,计算出的BO势会导致振动水平,其中LiH的均方根(rms)偏差约为6-7 cm-1,而LiD的均方根偏差约为3 cm-1。考虑到所有上述校正后,均方根偏差降至〜1 cm -1。这些结果代表了对所有LiH同位素的振动能级的先前理论预测的极大改进。

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