Use of Pseudopotentials in Atomic-Structure Calculations
- 15 September 1968
- journal article
- research article
- Published by AIP Publishing in The Journal of Chemical Physics
- Vol. 49 (6) , 2741-2755
- https://doi.org/10.1063/1.1670479
Abstract
Taking the general point of view that the ideas of pseudopotential analysis can be usefully applied to the removal of orthogonality constraints in a wide class of problems, we describe a generalization of the method of pseudopotentials which is applicable to many‐electron systems. The generalized pseudopotential derived herein reduces to the phillips–Kleinman pseudopotential under the one‐electron Hartree–Fock approximation, and a study of its structure helps to clarify some of the properties of one‐electron pseudopotentials. The generalized formalism is then applied to ions with one valence electron, such as Be+ and Mg+, where it suggests a simple model potential which gives a good description of the Rydberg spectra of these ions. The relationship of the pseudopotential to the model potential is discussed. The theory is then applied to atoms with two valence electrons, such as Be and Mg, and it is shown how the use of one‐electron pseudopotentials or model potentials can simplify, for example, the “exact pair” equations describing the motion of the valence‐electron pair in the Hartree–Fock sea and permit the removal of orthogonality constraints on the pair wavefunction. Good results are obtained in calculations of the valence‐pair energy of Be and Mg. Further approximations are discussed which allow calculation of the valence‐pair energy when the core orbitals are not known. The approximate methods are applied to Be, Mg, and Sr with good results.Keywords
This publication has 27 references indexed in Scilit:
- Model potential for systems with two valence electronsPhysica Status Solidi (b), 1968
- Use of Model Potentials in the Study of Molecular Rydberg StatesThe Journal of Chemical Physics, 1968
- Atomic Many-Body Problem. III. The Calculation of Hylleraas-Type Correlated Wave Functions for the Beryllium AtomPhysical Review B, 1967
- Atomic Bethe-Goldstone Equations. I. The Be AtomPhysical Review B, 1967
- The Model Potential for Systems with Closed ShellsPhysica Status Solidi (b), 1967
- Pseudopotential Theory of Atomic and Molecular Rydberg StatesThe Journal of Chemical Physics, 1966
- Atomic and Molecular Calculations with the Pseudopotential Method. I. The Binding Energy and Equilibrium Internuclear Distance of the Na2 MoleculeThe Journal of Chemical Physics, 1966
- Studies in Perturbation Theory. X. Lower Bounds to Energy Eigenvalues in Perturbation-Theory Ground StatePhysical Review B, 1965
- Formulation of the Quantum-Mechanical Many-Body Problem in Terms of One- and Two-Particle FunctionsPhysical Review B, 1963
- Atomic Many-Body Problem. I. General Theory of Correlated Wave FunctionsPhysical Review B, 1962