首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Comparison of Fundamental and Harmonic Frequencies of First-Row Closed-Shell Diatomics Calculated Using Full ab Initio Methods and Composite Methods
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Comparison of Fundamental and Harmonic Frequencies of First-Row Closed-Shell Diatomics Calculated Using Full ab Initio Methods and Composite Methods

机译:用全从头算和复合法计算的第一行闭壳硅藻的基本频率和谐波频率的比较

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摘要

The fundamental frequencies of vibration of 12 first-row closed-shell diatomics have been predicted using both full and composite levels of CCSD(T) ab initio theory. For a given CPU time budget, composite levels of theory were found to predict harmonic frequencies significantly better than full ab initio methods. However, little improvement was obtained in the computation of the anharmonic correction with composite methods, its being already well predicted at the CCSD(T) small basis set level. It was found that for a given CPU time budget the most accurate fundamental frequencies are obtained by performing a calculation of the harmonic frequencies using a composite method where the optimal choice of basis sets involved a larger cc-pVXZ basis set only 1 greater in the valence designation compared with the smaller basis set. An anharmonic correction computed using a small basis set or a low-level composite method could then be added to these harmonic frequencies. The implication of these findings is that accurate fundamental frequencies can be computed cheaply and efficiently by first computing the harmonic frequencies using an accurate composite method and then correcting these frequencies with an anharmonic correction obtained by solving the nuclear Schr?dinger equation by some means on a potential energy surface generated using a CCSD(T) small basis set or a low-level composite method.
机译:已经使用CCSD(T)从头算理论的完整水平和复合水平预测了12个第一行闭壳双原子硅的振动基频。对于给定的CPU时间预算,发现理论的综合水平比完全的从头算方法可以更好地预测谐波频率。但是,使用复合方法进行非谐校正的计算几乎没有改善,在CCSD(T)小基集级别已经很好地预测了它。我们发现,对于给定的CPU时间预算,通过使用复合方法对谐波频率进行计算,可以获得最准确的基频,其中基组的最佳选择涉及较大的cc-pVXZ基组,而价基仅高1个与较小的基础集相比。然后可以将使用小基础集或低级复合方法计算出的非谐波校正添加到这些谐波频率中。这些发现的含义是,可以通过首先使用精确的合成方法计算谐波频率,然后使用通过以某种方式对核薛定r方程进行求解而获得的非谐波校正来校正这些频率,从而廉价而有效地计算出准确的基本频率。使用CCSD(T)小基集或低级复合方法生成的势能面。

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