Abstract
Target electron removal in Li2+-Li collisions at 2290 keV/amu is studied experimentally and theoretically for ground and excited lithium target configurations. It is shown that in outer-shell ionization a single-electron process plays the dominant part. However, the K-shell ionization results are more difficult to interpret. According to our calculations, the process is shown to be strongly single-particle like. On one hand, a high resemblance between theoretical single-particle ionization and exclusive inner-shell ionization is demonstrated, and contributions from multi-electron processes are found to be weak. On the other hand, it is indicated by the discrepancy between experimental and single-particle theoretical results that multi-electron processes involving ionization from the outer-shell may play a crucial role.
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CITATION STYLE
͆piewanowski, M. D., Gulyás, L., Horbatsch, M., Goullon, J., Ferreira, N., Hubele, R., … Kirchner, T. (2015). Target electron ionization in Li2+-Li collisions: A multi-electron perspective. In Journal of Physics: Conference Series (Vol. 601). Institute of Physics Publishing. https://doi.org/10.1088/1742-6596/601/1/012010
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