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首页> 外文期刊>Journal of chemical theory and computation: JCTC >Elimination of translational and rotational motions in nuclear orbital plus molecular orbital theory: Contribution of the first-order rovibration coupling
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Elimination of translational and rotational motions in nuclear orbital plus molecular orbital theory: Contribution of the first-order rovibration coupling

机译:消除核轨道加分子轨道理论中的平移和旋转运动:一阶流动耦合的贡献

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摘要

The translation-and rotation-free nuclear orbital plus molecular orbital (TRF-NOMO) theory was developed to determine nonadiabatic nuclear and electronic wave functions. This study implemented a computational program for the TRF-NOMO method including first-order rotational terms, which corresponds to rovibronic coupling. Numerical assessments of first-order TRF-NOMO Hartree-Fock as well as second-order Moller-Plesset perturbation methods were carried out for several small molecules. The first-order contributions give small corrections in energy. Thus, we confirm that the approximate zeroth-order treatment is sufficient for eliminating the rotational contamination.
机译:发展了无平移和无旋转的核轨道加分子轨道(TRF-NOMO)理论来确定非绝热核和电子波函数。这项研究为TRF-NOMO方法实现了包括一阶旋转项的计算程序,该程序对应于电子振动耦合。对几个小分子进行了一级TRF-NOMO Hartree-Fock以及二级Moller-Plesset摄动方法的数值评估。一阶贡献对能量进行了小的校正。因此,我们确认了近似零阶处理足以消除旋转污染。

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