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Improved Segmented All-Electron Relativistically Contracted Basis Sets for the Lanthanides

机译:镧系元素的改进的分段全电子相对论收缩基集

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摘要

Improved versions of the segmented all-electron relativistically contracted (SARC) basis sets for the lanthanides are presented. The second-generation SARC2 basis sets maintain efficient construction of their predecessors and their individual adaptation to the DKH2 and ZORA Hamiltonians, but feature exponents optimized with a completely new orbital shape fitting procedure and a slightly expanded f space that results in sizable improvement in CASSCF energies and in significantly more accurate prediction of spin-orbit coupling parameters. Additionally, an extended set of polarization/correlation functions is constructed that is appropriate for multireference correlated calculations and new auxiliary basis sets for use in resolution-of identity (density-fitting) approximations in combination with both DFT and wave function based treatments. Thus, the SARC2 basis sets extend the applicability of the first-generation DFT-oriented basis sets to routine all-electron wave function-based treatments of lanthanide complexes. The new basis sets are benchmarked with respect to excitation energies, radial distribution functions, optimized geometries, orbital eigenvalues, ionization potentials, and spin-orbit coupling parameters of lanthanide systems and are shown to be suitable for the description of magnetic and spectroscopic properties using both DFT and multireference wave function-based methods.
机译:介绍了镧系元素的分段全电子相对论收缩(SARC)基集的改进版本。第二代SARC2基础集保持了其前辈的有效构造以及对DKH2和ZORA哈密顿量的个体适应性,但具有通过全新的轨道形状拟合程序和略微扩展的f空间进行优化的指数,从而大大改善了CASSCF能量并且可以更准确地预测自旋轨道耦合参数。此外,构造了扩展的极化/相关函数集,适用于多参考相关计算和新的辅助基础集,可与基于DFT和基于波动函数的处理方法结合用于分辨率(密度拟合)近似中。因此,SARC2基集将第一代面向DFT的基集的适用性扩展至镧系元素络合物的常规基于全电子波功能的处理。新的基准集就镧系元素的激发能,径向分布函数,优化的几何形状,轨道本征值,电离势和自旋轨道耦合参数进行了基准测试,并被证明适用于同时描述磁性和光谱性质基于DFT和多参考波函数的方法。

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