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首页> 外文期刊>The Journal of Chemical Physics >An efficient method for energy levels calculation using full symmetry and exact kinetic energy operator: Tetrahedral molecules
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An efficient method for energy levels calculation using full symmetry and exact kinetic energy operator: Tetrahedral molecules

机译:使用完全对称和精确动能算子的有效能级计算方法:四面体分子

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摘要

A simultaneous use of the full molecular symmetry and of an exact kinetic energy operator (KEO) is of key importance for accurate predictions of vibrational levels at a high energy range from a potential energy surface (PES). An efficient method that permits a fast convergence of variational calculations would allow iterative optimization of the PES parameters using experimental data. In this work, we propose such a method applied to tetrahedral AB(4) molecules for which a use of high symmetry is crucial for vibrational calculations. A symmetry-adapted contracted angular basis set for six redundant angles is introduced. Simple formulas using this basis set for explicit calculation of the angular matrix elements of KEO and PES are reported. The symmetric form (six redundant angles) of vibrational KEO without the sin(q)(-2) type singularity is derived. The efficient recursive algorithm based on the tensorial formalism is used for the calculation of vibrational matrix elements. A good basis set convergence for the calculations of vibrational levels of the CH4 molecule is demonstrated. (c) 2015 AIP Publishing LLC.
机译:同时使用全分子对称性和精确的动能算子(KEO)对于准确预测势能面(PES)在高能范围内的振动水平至关重要。一种允许快速收敛变分计算的有效方法将允许使用实验数据对PES参数进行迭代优化。在这项工作中,我们提出了一种应用于四面体AB(4)分子的方法,对于该方法,使用高对称性对于振动计算至关重要。介绍了针对六个冗余角度的对称自适应收缩角基集。报告了使用此基集的简单公式,用于显式计算KEO和PES的角度矩阵元素。推导了没有sin(q)(-2)型奇点的振动KEO的对称形式(六个冗余角)。基于张量形式主义的高效递归算法用于振动矩阵元素的计算。演示了用于计算CH4分子振动水平的良好基础集收敛性。 (c)2015 AIP Publishing LLC。

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