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用于4d元素钇-钯的能量一致相对论赝势和相关一致基组。

Energy-consistent relativistic pseudopotentials and correlation consistent basis sets for the 4d elements Y-Pd.

作者信息

Peterson Kirk A, Figgen Detlev, Dolg Michael, Stoll Hermann

机构信息

Department of Chemistry, Washington State University, Pullman, Washington 99164-4630, USA.

出版信息

J Chem Phys. 2007 Mar 28;126(12):124101. doi: 10.1063/1.2647019.

Abstract

Scalar-relativistic pseudopotentials and corresponding spin-orbit potentials of the energy-consistent variety have been adjusted for the simulation of the [Ar]3d(10) cores of the 4d transition metal elements Y-Pd. These potentials have been determined in a one-step procedure using numerical two-component calculations so as to reproduce atomic valence spectra from four-component all-electron calculations. The latter have been performed at the multi-configuration Dirac-Hartree-Fock level, using the Dirac-Coulomb Hamiltonian and perturbatively including the Breit interaction. The derived pseudopotentials reproduce the all-electron reference data with an average accuracy of 0.03 eV for configurational averages over nonrelativistic orbital configurations and 0.1 eV for individual relativistic states. Basis sets following a correlation consistent prescription have also been developed to accompany the new pseudopotentials. These range in size from cc-pVDZ-PP to cc-pV5Z-PP and also include sets for 4s4p correlation (cc-pwCVDZ-PP through cc-pwCV5Z-PP), as well as those with extra diffuse functions (aug-cc-pVDZ-PP, etc.). In order to accurately assess the impact of the pseudopotential approximation, all-electron basis sets of triple-zeta quality have also been developed using the Douglas-Kroll-Hess Hamiltonian (cc-pVTZ-DK, cc-pwCVTZ-DK, and aug-cc-pVTZ-DK). Benchmark calculations of atomic ionization potentials and 4d(m-2)5s(2)-->4d(m-1)5s(1) electronic excitation energies are reported at the coupled cluster level of theory with extrapolations to the complete basis set limit.

摘要

已对能量一致型的标量相对论赝势和相应的自旋轨道势进行了调整,以模拟4d过渡金属元素Y - Pd的[Ar]3d(10)芯。这些势是通过数值二分量计算在一步程序中确定的,以便从四分量全电子计算中重现原子价光谱。后者是在多组态狄拉克 - 哈特里 - 福克水平上进行的,使用狄拉克 - 库仑哈密顿量,并微扰地包含布雷特相互作用。导出的赝势对于非相对论轨道组态的组态平均值,能以0.03 eV的平均精度重现全电子参考数据,对于单个相对论态则为0.1 eV。还开发了遵循相关一致规定的基组来配合新的赝势。这些基组的大小范围从cc - pVDZ - PP到cc - pV5Z - PP,还包括用于4s4p相关的基组(从cc - pwCVDZ - PP到cc - pwCV5Z - PP),以及具有额外弥散函数的基组(aug - cc - pVDZ - PP等)。为了准确评估赝势近似的影响,还使用道格拉斯 - 克罗尔 - 赫斯哈密顿量开发了三重ζ质量的全电子基组(cc - pVTZ - DK、cc - pwCVTZ - DK和aug - cc - pVTZ - DK)。在理论的耦合簇水平上报告了原子电离势和4d(m - 2)5s(2)-->4d(m - 1)5s(1)电子激发能的基准计算,并外推到完全基组极限。

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