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来自单电子离子的极化高斯基组。

Polarized Gaussian basis sets from one-electron ions.

作者信息

Lehtola Susi

机构信息

Department of Chemistry, University of Helsinki, P.O. Box 55 (A. I. Virtasen aukio 1), FI-00014 Helsinki, Finland.

出版信息

J Chem Phys. 2020 Apr 7;152(13):134108. doi: 10.1063/1.5144964.

Abstract

We demonstrate that basis sets suitable for electronic structure calculations can be obtained from simple accuracy considerations for the hydrogenic one-electron ions Y for Y ∈ [1, Z], necessitating no self-consistent field calculations at all. It is shown that even-tempered basis sets with parameters from the commonly used universal Gaussian basis set (UGBS) [E. V. R. de Castro and F. E. Jorge, J. Chem. Phys. 108, 5225 (1998)] reproduce non-relativistic spin-restricted spherical Hartree-Fock total energies from fully numerical calculations to better accuracy than UGBS, which is shown to exhibit huge errors for some elements, e.g., 0.19 E for Th and 0.13 E for Lu, as it has been parameterized for a single atomic configuration. Having shown the feasibility of the one-electron approach, partially energy-optimized basis sets are formed for all atoms in the Periodic Table, 1 ≤ Z ≤ 118, by optimizing the even-tempered parameters for Z. As the hydrogenic Gaussian basis sets suggested in this work are built strictly from first principles, polarization shells can also be obtained in the same fashion in contrast to previous approaches. The accuracy of the polarized basis sets is demonstrated by calculations on a small set of molecules by comparison to fully numerical reference values, which show that chemical accuracy can be reached even for challenging cases such as SF. This approach is straightforward to extend to relativistic calculations and could facilitate studies beyond the established Periodic Table.

摘要

我们证明,适用于电子结构计算的基组可以从氢单电子离子Y(Y ∈ [1, Z])的简单精度考虑中获得,根本无需进行自洽场计算。结果表明,具有来自常用通用高斯基组(UGBS)[E. V. R. de Castro和F. E. Jorge,《化学物理杂志》108, 5225 (1998)]参数的等比基组,在重现完全数值计算的非相对论自旋限制球形哈特里-福克总能量方面,比UGBS具有更高的精度,UGBS对某些元素表现出巨大误差,例如钍的误差为0.19 E,镥的误差为0.13 E,因为它是针对单一原子构型进行参数化的。在证明了单电子方法的可行性之后,通过优化Z的等比参数,为元素周期表中1 ≤ Z ≤ 118的所有原子形成了部分能量优化的基组。由于本文提出的氢高斯基组是严格从第一原理构建的,与先前的方法相比,极化壳层也可以以相同的方式获得。通过与完全数值参考值比较,对一小部分分子进行计算,证明了极化基组的准确性,结果表明,即使对于像SF这样具有挑战性的情况,也能达到化学精度。这种方法很容易扩展到相对论计算,并且可以促进对已有的元素周期表之外的研究。

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