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Optimized effective atomic central potential

Physical review. A, General physics · 1976 · Vol. 14(1) · pp. 36–40
James D. TalmanW. F. Shadwick

Abstract

A self-consistent set of equations is derived for an atomic central potential such that the energy given by the orbitals for the potential is minimized. It is shown that this effective potential behaves like $\frac{\ensuremath{-}{e}^{2}}{r}$ for large $r$ values. The equations have been solved for carbon, neon, and aluminum, and the resulting total energies exceed the Hartree-Fock total energies by less than 0.005%. The theory leads to an effective, local, central exchange potential analogous to the $X\ensuremath{\alpha}$ potential.

Advanced Chemical Physics StudiesAdvanced Physical and Chemical Molecular InteractionsHigh-pressure geophysics and materialsNeonPhysicsAtomic physicsHartree–Fock methodAtomic orbitalAtomic theoryPotential energyQuantum mechanicsArgonElectron
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References
N�herungsmethode zur L�sung des quantenmechanischen Mehrk�rperproblems
The European Physical Journal A · 1930 · 1,809 citations
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