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Accuracy of energy-adjusted quasirelativistic<i>ab initio</i>pseudopotentials

Molecular Physics · 1993 · Vol. 78(5) · pp. 1211–1224
Ulrich HäußermannMichael DolgHermann StollH. PreußPeter SchwerdtfegerRussell M. Pitzer

Abstract

The results of valence-only self-consistent field calculations on Hg n+ (n = 0, 1, 2) and HgH n+ (n = 0, 1) using nonrelativistic and quasirelativistic energy-adjusted ab initio pseudopotentials for Hg are compared with corresponding all-electron values from nonrelativistic (Hartree-Fock) and relativistic (Dirac-Fock) atomic as well as from nonrelativistic (Hartree-Fock) and quasirelativistic (Hartree-Fock with no-pair Hamiltonian) molecular calculations. The accuracy of the energy-adjusted ab initio pseudopotential scheme, e.g., the reproduction of the major relativistic effects, is demonstrated both for the atom and the molecule. Correlation effects are included in the quasirelativistic pseudopotential studies by means of large-scale configuration interaction calculations. The quasirelativistic pseudopotential results obtained in the intermediate coupling scheme are in excellent agreement with available experimental data.

Advanced Chemical Physics StudiesAtomic and Molecular PhysicsInorganic Fluorides and Related CompoundsPseudopotentialAb initioChemistryHartree–Fock methodAb initio quantum chemistry methodsValence (chemistry)Electronic correlationAtomic physicsRelativistic quantum chemistryPhysics
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References
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Medical Entomology and Zoology · 1965 · 5,137 citations
<i>Ab initio</i>pseudopotentials for Hg through Rn
Molecular Physics · 1991 · 567 citations
Revision of the Douglas-Kroll transformation
Physical review. A, General physics · 1989 · 926 citations
An atomic multiconfigurational Dirac-Fock package
Computer Physics Communications · 1980 · 1,741 citations
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