Background
Type: Article

A Self-Consistent Model for Positronium Formation from Helium Atoms

Journal: Brazilian Journal of Physics (16784448)Year: August 2012Volume: 42Issue: Pages: 172 - 179
DOI:10.1007/s13538-012-0080-3Language: English

Abstract

The differential and total cross sections for electron capture by positrons from helium atoms are calculated using a first-order distorted wave theory satisfying the Coulomb boundary conditions. In this formalism, a parametric potential is used to describe the electron screening in a consistent and realistic manner. The present procedure is self-consistent because (a) it satisfies the correct boundary conditions and post-prior symmetry, and (b) the potential and the electron binding energies appearing in the transition amplitude are consistent with the wave functions describing the collision system. The results are compared with the other theories and with the available experimental measurements. At the considered range of collision energies, the results agree reasonably well with recent experiments and theories. © 2012 Sociedade Brasileira de Física.


Author Keywords

Coulomb boundary conditionsDifferential and total cross sectionsDistorted-wave approximationPositronium formation