Miyoshi Eisaku, Mori Hirotoshi, Hirayama Ryo, Osanai You, Noro Takeshi, Honda Hiroaki, Klobukowski Mariusz
Graduate School of Engineering Sciences, Kyushu University, 6-1 Kasuga Park, Fukuoka 816-8580, Japan.
J Chem Phys. 2005 Feb 15;122(7):074104. doi: 10.1063/1.1845392.
We propose compact and efficient valence-function sets for s- and p-block elements from Li to Rn to appropriately describe valence correlation in model core potential (MCP) calculations. The basis sets are generated by a combination of split MCP valence orbitals and correlating contracted Gaussian-type functions in a segmented form. We provide three types of basis sets. They are referred to as MCP-dzp, MCP-tzp, and MCP-qzp, since they have the quality comparable with all-electron correlation consistent basis sets, cc-pVDZ, cc-pVTZ, and cc-pVQZ, respectively, for lighter atoms. MCP calculations with the present basis sets give atomic correlation energies in good agreement with all-electron calculations. The present MCP basis sets systematically improve physical properties in atomic and molecular systems in a series of MCP-dzp, MCP-tzp, and MCP-qzp. Ionization potentials and electron affinities of halogen atoms as well as molecular spectroscopic constants calculated by the best MCP set are in good agreement with experimental values.
我们提出了适用于从锂到氡的s和p族元素的紧凑高效价函数集,以便在模型核心势(MCP)计算中恰当地描述价相关。基组由分段形式的分裂MCP价轨道和相关收缩高斯型函数组合生成。我们提供了三种类型的基组。它们被称为MCP-dzp、MCP-tzp和MCP-qzp,因为对于较轻的原子,它们分别具有与全电子相关一致基组cc-pVDZ、cc-pVTZ和cc-pVQZ相当的质量。使用当前基组的MCP计算给出的原子相关能与全电子计算结果吻合良好。当前的MCP基组在一系列MCP-dzp、MCP-tzp和MCP-qzp中系统地改善了原子和分子体系的物理性质。由最佳MCP集计算得到的卤素原子的电离势和电子亲和能以及分子光谱常数与实验值吻合良好。