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对HF、N₂、F₂和CO的谐波振动频率及平衡键长进行耦合簇连接四重态和五重态校正。

Coupled-cluster connected quadruples and quintuples corrections to the harmonic vibrational frequencies and equilibrium bond distances of HF, N(2), F(2), and CO.

作者信息

Ruden Torgeir A, Helgaker Trygve, Jørgensen Poul, Olsen Jeppe

机构信息

Department of Chemistry, University of Oslo, P.O. Box 1033 Blindern, N-0315 Oslo, Norway.

出版信息

J Chem Phys. 2004 Sep 22;121(12):5874-84. doi: 10.1063/1.1780155.

DOI:10.1063/1.1780155
PMID:15367015
Abstract

Using the coupled-cluster method, we have examined the contributions from the connected quadruple and quintuple virtual excitations to the harmonic vibrational frequencies and equilibrium bond distances of HF, N(2), F(2), and CO. Whereas the largest quadruples contributions are -18.8 cm(-1) to the harmonic frequency of N(2) and 0.43 pm to the bond distance of F(2), the largest quintuples contributions are -3.9 cm(-1) to the harmonic frequency of N(2) and 0.03 pm to the bond distances of N(2) and F(2). As we improve the description by going from the coupled-cluster singles-and-doubles model with a perturbative triples correction [CCSD(T)] to the coupled-cluster singles-doubles-triples-and-quadruples model, the mean and maximum absolute errors in the calculated frequencies relative to experiment are reduced from 11.3 and 15.8 cm(-1), respectively, to 3.2 and 4.7 cm(-1); for the bond distances, the mean and maximum absolute errors are reduced from 0.16 and 0.47 pm, respectively, to 0.04 and 0.13 pm. The calculations presented here confirm previous observations that, to some extent, the relatively small errors in the CCSD(T) equilibrium bond distances and harmonic frequencies arise from a cancellation of errors in the approximate (perturbative) treatment of the connected triples and the neglect of higher-order connected excitations. Further inclusion of quintuples contributions, relativistic corrections, and adiabatic corrections reduces the mean and maximum absolute errors to 1.1 and 2.3 cm(-1), respectively, for the harmonic frequencies and to 0.02 and 0.05 pm, respectively, for the bond distances.

摘要

我们使用耦合簇方法研究了关联四重和五重虚激发对HF、N₂、F₂和CO的谐振动频率及平衡键长的贡献。对于谐振动频率,关联四重激发的最大贡献是对N₂为-18.8 cm⁻¹,对F₂的键长为0.43 pm;对于关联五重激发,最大贡献是对N₂的谐振动频率为-3.9 cm⁻¹,对N₂和F₂的键长为0.03 pm。当我们从带微扰三重激发校正的耦合簇单双激发模型[CCSD(T)]改进到耦合簇单双三四重激发模型时,计算频率相对于实验值的平均绝对误差和最大绝对误差分别从11.3 cm⁻¹和15.8 cm⁻¹降至3.2 cm⁻¹和4.7 cm⁻¹;对于键长,平均绝对误差和最大绝对误差分别从0.16 pm和0.47 pm降至0.04 pm和0.13 pm。此处的计算证实了之前的观察结果,即在一定程度上,CCSD(T)平衡键长和谐振动频率中相对较小的误差源于关联三重激发的近似(微扰)处理中的误差抵消以及高阶关联激发的忽略。进一步纳入五重激发贡献、相对论校正和绝热校正后,对于谐振动频率,平均绝对误差和最大绝对误差分别降至1.1 cm⁻¹和2.3 cm⁻¹,对于键长,分别降至0.02 pm和0.05 pm。

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