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首页> 外文期刊>The Journal of Chemical Physics >The ab initio ground-state potential energy function of beryllium monohydride, BeH
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The ab initio ground-state potential energy function of beryllium monohydride, BeH

机译:一氢化铍BeH的从头算基态势能函数

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The accurate ground-state potential energy function of beryllium monohydride, BeH, has been determined from large-scale ab initio calculations using the multi-reference averaged coupled-pair functional (MR-ACPF) method in conjunction with the correlation-consistent core-valence basis sets up to septuple-zeta quality. The effects of electron correlation beyond the MR-ACPF level of approximation were taken into account. The scalar relativistic and adiabatic (the diagonal correction) effects, as well as some of the nonadiabatic effects, were also discussed. The vibration-rotation energy levels of three isotopologues, BeH, BeD, and BeT, were predicted to sub-cm ~(-1) accuracy.
机译:使用多参考平均耦合对功能(MR-ACPF)方法以及相关一致的中心价,通过大规模的从头算计算确定了一氢化铍BeH的准确基态势能函数基础建立了七元组的质量。考虑了超出MR-ACPF近似水平的电子相关性的影响。还讨论了标量相对论和绝热效应(对角校正)以及一些非绝热效应。预测三种同位素BeH,BeD和BeT的振动旋转能级低于cm-(-1)。

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