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斯莱特型轨道的极化基组:氢到氖原子

Polarized basis sets of Slater-type orbitals: H to Ne atoms.

作者信息

Ema I, García De La Vega J M, Ramírez G, López R, Fernández Rico J, Meissner H, Paldus J

机构信息

Departamento de Química Física Aplicada, Facultad de Ciencias C-XIV, Universidad Autónoma de Madrid, 28049 Madrid, Spain.

出版信息

J Comput Chem. 2003 May;24(7):859-68. doi: 10.1002/jcc.10227.

Abstract

We present three Slater-type atomic orbital (STO) valence basis (VB) sets for the first and second row atoms, referred to as the VB1, VB2, and VB3 bases. The smallest VB1 basis has the following structure: [3, 1] for the H and He atoms, [5, 1] for Li and Be, and [5, 3, 1] for the B to Ne series. For the VB2 and VB3 bases, both the number of shells and the number of functions per shell are successively increased by one with respect to VB1. With the exception of the H and Li atoms, the exponents for the VB1 bases were obtained by minimizing the sum of the Hartree-Fock (HF) and frozen-core singles and doubles configuration interaction (CISD FC) energies of the respective atoms in their ground state. For H and Li, we minimized the sum of the HF and CISD FC energies of the corresponding diatoms (i.e., of H(2) or Li(2)) plus the ground-state energy of the atom. In the case of the VB2 basis sets, the sum that was minimized also included the energies of the positive and negative ions, and for the VB3 bases, the energies of a few lowest lying excited states of the atom. To account for the core correlations, the VBx (x = 1, 2, and 3) basis sets for the Li to Ne series were enlarged by one function per shell. The exponents of these extended (core-valence, CV) basis sets, referred to, respectively, as the CVBx (x = 1, 2, and 3) bases, were optimized by relying on the same criteria as in the case of the VBx (x = 1, 2, and 3) bases, except that the full CISD rather than CISD FC energies were employed. We show that these polarized STO basis sets provide good HF and CI energies for the ground and excited states of the atoms considered, as well as for the corresponding ions.

摘要

我们给出了用于第一和第二周期原子的三个斯莱特型原子轨道(STO)价基组(VB),分别称为VB1、VB2和VB3基组。最小的VB1基组具有以下结构:氢和氦原子为[3, 1],锂和铍为[5, 1],硼到氖系列为[5, 3, 1]。对于VB2和VB3基组,相对于VB1,壳层数和每个壳层的函数数都依次增加一个。除了氢和锂原子外,VB1基组的指数是通过最小化相应原子基态的哈特里 - 福克(HF)和冻结核心单双激发组态相互作用(CISD FC)能量之和得到的。对于氢和锂,我们最小化了相应双原子分子(即H₂或Li₂)的HF和CISD FC能量之和加上原子的基态能量。对于VB2基组,最小化的能量和还包括正离子和负离子的能量,对于VB3基组,还包括原子的一些最低激发态的能量。为了考虑核心关联,锂到氖系列的VBx(x = 1, 2, 3)基组每个壳层增加了一个函数。这些扩展的(核心价,CV)基组的指数,分别称为CVBx(x = 1, 2, 3)基组,除了使用全CISD而不是CISD FC能量外,是根据与VBx(x = 1, 2, 3)基组相同的标准进行优化的。我们表明,这些极化的STO基组为所考虑原子的基态和激发态以及相应离子提供了良好的HF和CI能量。

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