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首页> 外文期刊>The Journal of Chemical Physics >CVRQD ab initio ground-state adiabatic potential energy surfaces for the water molecule
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CVRQD ab initio ground-state adiabatic potential energy surfaces for the water molecule

机译:CVRQD水分子从头开始的绝热势能面

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The high accuracy ab initio adiabatic potential energy surfaces (PESs) of the ground electronic state of the water molecule, determined originally by Polyansky [Science 299, 539 (2003)] and called CVRQD, are extended and carefully characterized and analyzed. The CVRQD potential energy surfaces are obtained from extrapolation to the complete basis set of nearly full configuration interaction valence-only electronic structure computations, augmented by core, relativistic, quantum electrodynamics, and diagonal Born-Oppenheimer corrections. We also report ab initio calculations of several quantities characterizing the CVRQD PESs, including equilibrium and vibrationally averaged (0 K) structures, harmonic and anharmonic force fields, harmonic vibrational frequencies, vibrational fundamentals, and zero-point energies. They can be considered as the best ab initio estimates of these quantities available today. Results of first-principles computations on the rovibrational energy levels of several isotopologues of the water molecule are also presented, based on the CVRQD PESs and the use of variational nuclear motion calculations employing an exact kinetic energy operator given in orthogonal internal coordinates. The variational nuclear motion calculations also include a simplified treatment of nonadiabatic effects. This sophisticated procedure to compute rovibrational energy levels reproduces all the known rovibrational levels of the water isotopologues considered, (H2O)-O-16, (H2O)-O-17, (H2O)-O-18, and (D2O)-O-16, to better than 1 cm(-1) on average. Finally, prospects for further improvement of the ground-state adiabatic ab initio PESs of water are discussed. (c) 2006 American Institute of Physics.
机译:最初由Polyansky [Science 299,539(2003)]确定并称为CVRQD的水分子基态电子态的高精度从头开始的绝热势能面(PES)被扩展,仔细地表征和分析。 CVRQD势能面是通过外推获得的,几乎是完整的配置相互作用价电子结构的完整基础集,并通过核,相对论,量子电动力学和对角Born-Oppenheimer校正得到了增强。我们还报告了表征CVRQD PESs的从头计算,包括平衡和振动平均(0 K)结构,谐波和非谐力场,谐波振动频率,振动基波和零点能量。可以将它们视为当今可用数量的最佳从头算。还给出了基于CVRQD PES的水原理,以及水分子的几种同位素的旋转能级的第一性原理计算结果,以及使用在正交内部坐标中给出的精确动能算子的变核运动计算结果。变核运动计算还包括非绝热效应的简化处理。这种复杂的计算振动能级的程序可重现考虑的(H2O)-O-16,(H2O)-O-17,(H2O)-O-18和(D2O)-O的水同位素的所有已知振动度。 -16,平均优于1 cm(-1)。最后,讨论了进一步改善水的基态绝热从头开始的PES的前景。 (c)2006年美国物理研究所。

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