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基于关联和自旋轨道计算的新一代有效核势:选定的重元素。

A new generation of effective core potentials from correlated and spin-orbit calculations: Selected heavy elements.

作者信息

Wang Guangming, Kincaid Benjamin, Zhou Haihan, Annaberdiyev Abdulgani, Bennett M Chandler, Krogel Jaron T, Mitas Lubos

机构信息

Department of Physics, North Carolina State University, Raleigh, North Carolina 27695-8202, USA.

Materials Science and Technology Division, Oak Ridge National Laboratory, Oak Ridge, Tennessee 37831, USA.

出版信息

J Chem Phys. 2022 Aug 7;157(5):054101. doi: 10.1063/5.0087300.

DOI:10.1063/5.0087300
PMID:35933201
Abstract

We introduce new correlation consistent effective core potentials (ccECPs) for the elements I, Te, Bi, Ag, Au, Pd, Ir, Mo, and W with 4d, 5d, 6s, and 6p valence spaces. These ccECPs are given as a sum of spin-orbit averaged relativistic effective potential (AREP) and effective spin-orbit (SO) terms. The construction involves several steps with increasing refinements from more simple to fully correlated methods. The optimizations are carried out with objective functions that include weighted many-body atomic spectra, norm-conservation criteria, and SO splittings. Transferability tests involve molecular binding curves of corresponding hydride and oxide dimers. The constructed ccECPs are systematically better and in a few cases on par with previous effective core potential (ECP) tables on all tested criteria and provide a significant increase in accuracy for valence-only calculations with these elements. Our study confirms the importance of the AREP part in determining the overall quality of the ECP even in the presence of sizable spin-orbit effects. The subsequent quantum Monte Carlo calculations point out the importance of accurate trial wave functions that, in some cases (mid-series transition elements), require treatment well beyond a single-reference.

摘要

我们针对具有4d、5d、6s和6p价层空间的碘、碲、铋、银、金、钯、铱、钼和钨等元素,引入了新的关联一致有效核势(ccECP)。这些ccECP表示为自旋轨道平均相对论有效势(AREP)和有效自旋轨道(SO)项的总和。构建过程涉及几个步骤,从更简单的方法到完全关联的方法,不断进行细化。优化是通过包含加权多体原子光谱、范数守恒标准和SO分裂的目标函数来进行的。可转移性测试涉及相应氢化物和氧化物二聚体的分子结合曲线。在所有测试标准下,构建的ccECP在系统上表现更好,在某些情况下与先前的有效核势(ECP)表相当,并且在仅对价层进行计算时,显著提高了这些元素的计算精度。我们的研究证实了AREP部分在确定ECP整体质量方面的重要性,即使在存在相当大的自旋轨道效应的情况下也是如此。随后的量子蒙特卡罗计算指出了精确试探波函数的重要性,在某些情况下(中间系列过渡元素),这需要超出单参考的处理。

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