Non-local positron-electron density functional theory and the positron surface state
- 1 December 1988
- journal article
- Published by IOP Publishing in Journal of Physics F: Metal Physics
- Vol. 18 (12) , L277-L285
- https://doi.org/10.1088/0305-4608/18/12/002
Abstract
The authors describe a non-local positron-electron density functional theory and show how it can be used to find the correlation potential for a positron in inhomogeneous systems where non-local effects are important. The theory is applied to the image potential induced surface state at a metal surface. Here the image potential arises from interactions between the positron and its screening cloud, which become increasingly long ranged and non-local as the positron leaves the surface. They have tested the theory with calculations of the binding energy and lifetime of a positron at an aluminium surface which agree well with experimental values.Keywords
This publication has 21 references indexed in Scilit:
- Experimental barrier heights and the image potential in scanning tunneling microscopySurface Science, 1988
- Calculations of the angular correlation of positron annihilation at ideal and defected aluminium surfacesJournal of Physics F: Metal Physics, 1988
- Self-consistent weighted-density approximation for the electron gas. I. Bulk propertiesPhysical Review B, 1988
- A calculation of the annihilation characteristics of positrons trapped at metal surfacesJournal of Physics F: Metal Physics, 1987
- Electron-positron density-functional theoryPhysical Review B, 1986
- Electron and positron response to atomic defects in solids: A theoretical study of the monovacancy and divacancy in aluminumPhysical Review B, 1983
- Density Functional Calculations for Atoms, Molecules and ClustersPhysica Scripta, 1980
- Descriptions of exchange and correlation effects in inhomogeneous electron systemsPhysical Review B, 1979
- Electron liquid in collective description. III. Positron annihilationAnnals of Physics, 1979
- Inhomogeneous Electron GasPhysical Review B, 1964