The effect of configuration-interaction target states on the elastic scattering of low-energy electrons by complex atoms
- 11 September 1975
- journal article
- Published by IOP Publishing in Journal of Physics B: Atomic and Molecular Physics
- Vol. 8 (13) , 2200-2209
- https://doi.org/10.1088/0022-3700/8/13/012
Abstract
The total wavefunction (target plus incident electron) is represented by a close-coupling expansion. For complex atoms such as atomic helium and oxygen, the effects of configuration-interaction target states are discussed and analysed, in part. For atomic helium, the 2S partial-wave elastic cross section obtained using a He configuration-interaction ground state is virtually identical with the corresponding cross section obtained using a Roothaan-Hartree-Fock ground state. For atomic oxygen, the 4P partial-wave elastic phaseshift can increase to such an extent as to cause the 4P partial-wave cross section to go through zero at k2 approximately=0.2 Ryd. Finally, a second procedure is discussed for including correlation states when CI target states are used in the close-coupling expansion.Keywords
This publication has 9 references indexed in Scilit:
- Elastic scattering of electrons by atomic oxygenJournal of Physics B: Atomic and Molecular Physics, 1974
- Application of the Noniterative-Integral-Equation Method to Electron-Hydrogen ScatteringPhysical Review A, 1973
- Noniterative Integral-Equation Approach to Scattering ProblemsPhysical Review A, 1973
- Elastic scattering of electrons by hydrogen and helium atomsJournal of Physics B: Atomic and Molecular Physics, 1972
- Trial Wave Functions in the Close-Coupling ApproximationPhysical Review B, 1969
- Scattering of Electrons by Atomic SystemsPhysical Review B, 1968
- Calculations on the Scattering of Electrons by Atomic Systems with ConfigurationsPhysical Review B, 1967
- Ab Initio Computations in Atoms and MoleculesIBM Journal of Research and Development, 1965
- The partial wave theory of electron-hydrogen atom collisionsMathematical Proceedings of the Cambridge Philosophical Society, 1957