Electron-heliumS -wave model benchmark calculations. II. Double ionization, single ionization with excitation, and double excitation
Author(s) -
Philip L. Bartlett,
A. T. Stelbovics
Publication year - 2010
Publication title -
physical review a
Language(s) - English
Resource type - Journals
eISSN - 1094-1622
pISSN - 1050-2947
DOI - 10.1103/physreva.81.022716
Subject(s) - physics , ionization , helium , benchmark (surveying) , atomic physics , electron , excitation , scaling , quantum mechanics , ion , geometry , mathematics , geodesy , geography
The propagating exterior complex scaling (PECS) method is extended to all four-body processes in electron impact on helium in an S-wave model. Total and energy-differential cross sections are presented with benchmark accuracy for double ionization, single ionization with excitation, and double excitation (to autoionizing states) for incident-electron energies from threshold to 500 eV. While the PECS three-body cross sections for this model given in the preceding article [Phys. Rev. A 81, 022715 (2010)] are in good agreement with other methods, there are considerable discrepancies for these four-body processes. With this model we demonstrate the suitability of the PECS method for the complete solution of the electron-helium system.
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