Claudino Daniel, Gargano Ricardo, Bartlett Rodney J
Quantum Theory Project, University of Florida, Gainesville, Florida 32611, USA.
Instituto de Física, Universidade de Brasília, CP04455, Brasília, DF, CEP 70919-970, Brazil.
J Chem Phys. 2016 Mar 14;144(10):104106. doi: 10.1063/1.4943275.
Novel basis sets are generated that target the description of valence correlation in atoms H through Ar. The new contraction coefficients are obtained according to the Atomic Natural Orbital (ANO) procedure from CCSD(T) (coupled-cluster singles and doubles with perturbative triples correction) density matrices starting from the primitive functions of Dunning et al. [J. Chem. Phys. 90, 1007 (1989); ibid. 98, 1358 (1993); ibid. 100, 2975 (1993)] (correlation consistent polarized valence X-tuple zeta, cc-pVXZ). The exponents of the primitive Gaussian functions are subject to uniform scaling in order to ensure satisfaction of the virial theorem for the corresponding atoms. These new sets, named ANO-VT-XZ (Atomic Natural Orbital Virial Theorem X-tuple Zeta), have the same number of contracted functions as their cc-pVXZ counterparts in each subshell. The performance of these basis sets is assessed by the evaluation of the contraction errors in four distinct computations: correlation energies in atoms, probing the density in different regions of space via ⟨r(n)⟩ (-3 ≤ n ≤ 3) in atoms, correlation energies in diatomic molecules, and the quality of fitting potential energy curves as measured by spectroscopic constants. All energy calculations with ANO-VT-QZ have contraction errors within "chemical accuracy" of 1 kcal/mol, which is not true for cc-pVQZ, suggesting some improvement compared to the correlation consistent series of Dunning and co-workers.
生成了针对描述氢到氩原子价层相关的新型基组。新的收缩系数是根据原子自然轨道(ANO)程序,从邓宁等人[《化学物理杂志》90, 1007 (1989); 同上,98, 1358 (1993); 同上,100, 2975 (1993)](相关一致极化价X重zeta,cc-pVXZ)的原始函数出发,利用CCSD(T)(耦合簇单双激发并带有微扰三重激发校正)密度矩阵获得的。原始高斯函数的指数进行统一缩放,以确保相应原子满足维里定理。这些新的基组命名为ANO-VT-XZ(原子自然轨道维里定理X重zeta),每个子壳层中收缩函数的数量与其对应的cc-pVXZ基组相同。通过在四种不同计算中评估收缩误差来评估这些基组的性能:原子中的相关能、通过原子中⟨r(n)⟩(-3 ≤ n ≤ 3)探测不同空间区域的密度、双原子分子中的相关能以及用光谱常数衡量的拟合势能曲线的质量。使用ANO-VT-QZ进行的所有能量计算的收缩误差都在1 kcal/mol的“化学精度”范围内,而cc-pVQZ并非如此,这表明与邓宁及其同事的相关一致系列相比有一些改进。