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首页> 外文期刊>Chemical Physics Letters >The performance of explicitly correlated wavefunctions [CCSD(T)-F12b] in the computation of anharmonic vibrational frequencies
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The performance of explicitly correlated wavefunctions [CCSD(T)-F12b] in the computation of anharmonic vibrational frequencies

机译:明确相关波发射在anharmonic振动频率计算中的明确相关波发射[CCSD(T)-F12B]的性能

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摘要

CCSD(T)-F12b/cc-pVTZ-F12 anharmonic vibrational frequencies match experiment or higher-level theory to within an average of 10.3 cm(-1) for a sample set of 11 molecules. This is further reduced below 7.0 cm(-1) when extreme differences are removed from the data set. CCSD(T)-F12b/cc-pVTZ-F12 and CCSD(T)-F12b/cc-pVDZ-F12 frequencies differ on average by 4.8 cm(-1). The CCSD(T)-F12b frequencies require orders of magnitude less computer time than higher-order theory and cc-pVDZ-F12 less than cc-pVTZ-F12, especially as the number of atoms increases. Hence, utilization of these levels of theory may provide accurate vibrational frequencies for larger molecules provided that the core-electron correlation is not significant.
机译:CCSD(T)-F12B / CC-PVTZ-F12 Anharmonic振动频率匹配实验或更高级别理论,平均为10.3cm(-1),用于11个分子的样品组。 当从数据集中移除极端差异时,这进一步降低了7.0 cm(-1)。 CCSD(T)-F12B / CC-PVTZ-F12和CCSD(T)-F12B / CC-PVDZ-F12频率平均不同4.8厘米(-1)。 CCSD(T)-F12B频率需要比高阶理论的数量级,而CC-PVDZ-F12小于CC-PVTZ-F12,特别是由于原子数增加。 因此,提供这些理论水平的利用可以为较大分子提供精确的振动频率,条件是核心电子相关性不显着。

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