Electron-impact ionization of diatomic molecules using a configuration-average distorted-wave method
Data(s) |
2007
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Resumo |
Electron-impact ionization cross sections for diatomic molecules are calculated in a configuration-average distorted-wave method. Core bound orbitals for the molecular ion are calculated using a single-configuration self-consistent-field method based on a linear combination of Slater-type orbitals. The core bound orbitals are then transformed onto a two-dimensional (r,θ) numerical lattice from which a Hartree potential with local exchange is constructed. The single-particle Schrödinger equation is then solved for the valence bound orbital and continuum distorted-wave orbitals with S-matrix boundary conditions. Total cross section results for H2 and N2 are compared with those from semiempirical calculations and experimental measurements. |
Identificador | |
Idioma(s) |
eng |
Direitos |
info:eu-repo/semantics/restrictedAccess |
Fonte |
Pindzola , M S , Robicheaux , F , Colgan , J & Ballance , C P 2007 , ' Electron-impact ionization of diatomic molecules using a configuration-average distorted-wave method ' Physical Review A (Atomic, Molecular, and Optical Physics) , vol 76 , no. 1 . DOI: 10.1103/PhysRevA.76.012714 |
Tipo |
article |