Experimental and theoretical (e,2e) ionization cross sections for a hydrogen target at 75.3 eV incident energy in a coplanar asymmetric geometry

Junfang Gao, D. H. Madison, J. L. Peacher, Andrew James Murray, Martyn J. Hussey

    Research output: Contribution to journalArticlepeer-review

    Abstract

    Very recently it was shown that the molecular three-body distorted wave (M3DW) approach gives good agreement with the shape of the experimental data for electron-impact ionization of H2 in a coplanar symmetric geometry, providing the incident electrons have an energy of 35 eV or greater. One of the weaknesses of these studies was that only the shape of the cross section could be compared to experiment, since there was no absolute or relative normalization of the data. Here we report a joint experimental/theoretical study of electron-impact ionization of H2 in a coplanar asymmetric geometry where the energy of the incident electron was fixed, and different pairs of final state electron energies were used. In this case, the experimental data can be normalized such that only one renormalization factor is required. It is shown that the M3DW is pretty good in agreement with experiment. However, a better treatment of polarization and exchange between the continuum and bound state electrons is required before quantitative agreement between experiment and theory is achieved. © 2006 American Institute of Physics.
    Original languageEnglish
    Article number194306
    JournalJournal of Chemical Physics
    Volume124
    Issue number19
    DOIs
    Publication statusPublished - 21 May 2006

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