Osanai You, Noro Takeshi, Miyoshi Eisaku, Sekiya Masahiro, Koga Toshikatsu
Aomori University, Aomori 030-0943, Japan.
J Chem Phys. 2004 Apr 8;120(14):6408-13. doi: 10.1063/1.1665395.
Contracted Gaussian-type function sets to describe valence correlation are developed for the sixth-period d-block atoms Lu through Hg. A segmented contraction scheme is employed for their compactness and efficiency. Contraction coefficients and exponents are determined by minimizing the deviation from accurate natural orbitals generated from configuration interaction calculations, in which relativistic effects are incorporated through the third-order Douglas-Kroll approximation. The present basis sets yield more than 99% of atomic correlation energies predicted by accurate natural orbital sets of the same size. Relativistic model core potential calculations with the present correlating sets give the spectroscopic constants of the AuH molecule in excellent agreement with experimental results.
为描述第六周期d区元素镥(Lu)至汞(Hg)的价层相关效应,开发了收缩高斯型函数集。采用分段收缩方案以保证其紧凑性和效率。收缩系数和指数通过最小化与由组态相互作用计算生成的精确自然轨道的偏差来确定,其中相对论效应通过三阶道格拉斯-克罗尔近似纳入。当前的基组产生的原子相关能超过了相同大小的精确自然轨道集预测值的99%。使用当前相关集进行的相对论模型赝势计算给出的AuH分子光谱常数与实验结果高度吻合。