DOE OSTI · 3009551
Linearized Pair-Density Functional Theory with Spin–Orbit Coupling
Abstract
Here, we include spin–orbit coupling (SOC) effects in linearized pair-density functional theory (L-PDFT), which is a multistate extension of multiconfiguration pair-density functional theory (MC-PDFT). Both 1-electron and 2-electron SOC integrals are computed using Breit-Pauli and Douglas–Kroll–Hess Hamiltonians in the atomic mean-field approximation. SO-L-PDFT removes the unphysical J-symmetry breaking observed in MC-PDFT. The accuracy of SO-L-PDFT is validated by calculations of zero-field splittings, fine-structure excitation energies, and low-energy excited-state spectra for a diverse group of atoms and molecules spanning the whole range of the periodic table, including atoms of groups 3, 11, and 13–17, the Ce 3+ and U 5+ ions, group 16 monohydrides, group 17 monoxides, lanthanide hexachlorides ([CeCl 6 ] 3− , [PrCl 6 ] 3− , and [NdCl 6 ] 3− ), actinyl ions ([UO 2 ] + , [NpO 2 ] 2+ ), and tricarbonatoactinyl complexes ([UO 2 (CO 3 ) 3 ] 5− , [NpO 2 (CO 3 ) 3 ] 4− ). We also compare the results to new spin–orbit-inclusive calculations by single-state and multistate multireference perturbation theory.
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Jangid, Bhavnesh [Univ. of Chicago, IL (United States)] (ORCID:0000000160484981), Hennefarth, Matthew R. [Univ. of Chicago, IL (United States)] (ORCID:0000000266012253), Hermes, Matthew R. [Univ. of Chicago, IL (United States)] (ORCID:0000000178072950), Truhlar, Donald G. [Univ. of Minnesota, Minneapolis, MN (United States)] (ORCID:0000000277427294), Gagliardi, Laura [Univ. of Chicago, IL (United States)] (ORCID:0000000152271396). 2025-12-19. Linearized Pair-Density Functional Theory with Spin–Orbit Coupling. https://doi.org/10.1021/acs.jctc.5c01633
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