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Fully Correlated Electronic Dynamics for Antiproton Impact Ionization of Helium

Atomic Physics 2008-11-26 v2

Abstract

We present total cross sections for single and double ionization of helium by antiproton impact over a wide range of impact energies from 10 keV/amu to 1 MeV/amu. A non-perturbative time-dependent close-coupling method (TDCC) is applied to fully treat the correlated dynamics of the ionized electrons. Excellent agreement is obtained between our calculations and experimental measurements of total single and double ionization cross sections at high impact energies, whereas for lower impact energies, some discrepancies with experiment are found. At an impact energy of 1 MeV we also find that the double-to-single ionization ratio is twice as large for antiproton impact as for proton impact, confirming a long-standing unexpected experimental measurement.

Keywords

Cite

@article{arxiv.0710.3350,
  title  = {Fully Correlated Electronic Dynamics for Antiproton Impact Ionization of Helium},
  author = {M. Foster and J. Colgan and M. S. Pindzola},
  journal= {arXiv preprint arXiv:0710.3350},
  year   = {2008}
}

Comments

Submitted to Physical Review Letters. 5 Pages 3 Figures