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首页> 外文期刊>Physical chemistry chemical physics: PCCP >Are ab initio quantum chemistry methods able to predict vibrational states up to the dissociation limit for multi-electron molecules close to spectroscopic accuracy?
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Are ab initio quantum chemistry methods able to predict vibrational states up to the dissociation limit for multi-electron molecules close to spectroscopic accuracy?

机译:从头算量子化学方法能否预测振动状态,直至多电子分子的解离极限接近光谱精度?

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摘要

The aim of the study was to explore the limits of ab initio methods towards the description of excited vibrational levels up to the dissociation limit for molecules having more than two electrons. To this end a high level ab initio potential energy function was constructed for the four-electron LiH molecule in order to accurately predict a complete set of bound vibrational levels corresponding to the electronic ground state. It was composed from: (a) an ab initio non-relativistic potential obtained at the MR-CISD level including size-extensivity corrections and quintuple-sextuple ζ extrapolation of the basis, (b) MVD relativistic corrections obtained at icMR-CISD/cc-pwCV5Z level, and (c) DBOC obtained at the MR-CISD/cc-pwCVTZ level. Finally, the importance of non-adiabatic effects was also tested by using atomic masses in the vibrational kinetic energy operator. The calculated vibrational levels were compared with those obtained from experimental data [J. A. Coxon and C. S. Dickinson, J. Chem. Phys., 2004, 121, 9378]. Our best estimate of the potential curve results in vibrational energies with a RMS deviation of only ~ 1 cm~(-1) for the entire set of all empirically determined vibrational levels known so far. These results represent a drastic improvement over previous theoretical predictions of vibrational levels of ~7LiH up to dissociation, D0, which was predicted to be 19 594 cm~(-1).
机译:该研究的目的是探索从头算方​​法的局限性,以描述激发的振动能级,直至具有两个以上电子的分子的解离极限。为此,为四电子LiH分子构建了一个高水平的从头算势能函数,以便准确地预测与电子基态相对应的一组完整的结合振动能级。它由以下几部分组成:(a)在MR-CISD级别获得的从头算起的非相对论性,包括大小扩展校正和五倍基数ζ的基础外推,(b)在icMR-CISD / cc中获得的MVD相对论校正-pwCV5Z级别,以及(c)以MR-CISD / cc-pwCVTZ级别获得的DBOC。最后,还通过在振动动能算子中使用原子质量来测试非绝热效应的重要性。将计算出的振动水平与从实验数据获得的振动水平进行比较[J. A. Coxon和C. S. Dickinson,J. Chem。物理学报,2004,121,9378]。我们对势能曲线的最佳估计得出的振动能量,到目前为止,根据经验确定的所有振动水平的整个集合的RMS偏差仅为〜1 cm〜(-1)。这些结果表明,相对于以前的〜7LiH振动水平直至解离D0的理论预测有了显着改进,D0被预测为19 594 cm〜(-1)。

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