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Dielectronic recombination of lithium-like Ar15+
Authors:S Schennach  A Müller  O Uwira  J Haselbauer  W Spies  A Frank  M Wagner  R Becker  M Kleinod  E Jennewein  N Angert  P H Mokler  N R Badnell  M S Pindzola
Institution:1. Gesellschaft für Schwerionenforschung (GSI), D-64291, Darmstadt, Germany
3. Institut für Strahlenphysik, Universit?t Stuttgart, D-70569, Stuttgart, Germany
2. Institut für Kernphysik, Justus-Liebig-Universit?t, Giessen, Germany
4. Institut für Angewandte Physik, Universit?t Frankfurt, D-60054, Frankfurt, Germany
5. Institut für Angewandte Physik, J.-W.-Goethe-Universit?t, Frankfurt, Germany
6. Department of Physics & Applied Physics, University of Strathclyde, G4 0NG, Glasgow, UK
8. Department of Physics, Auburn University, 36849, Auburn, AL, USA
Abstract:Dielectronic recombination (DR) of Ar15+(1s 22s) ions was studied in a single-pass merged-beams experiment at the UNILAC (universal linear accelerator) of GSI. Absolute recombination rates and cross sections were measured for electron-ion center-of-mass energies from 0 to 580 eV. A number of Rydberg states formed by DR with 2s → 2pn=0) and 2s → 3? (Δn=1) core excitations and even individual terms in the 1s 23?3?′ configuration could be resolved. Theoretical calculations of DR cross sections are in good overall agreement with the data. In the calculations for Δn=0 transitions, effects of electric fields have to be included to reproduce the magnitude of the measured DR rates at the limit of the 2 p 1/2? and 2 p 3/2? Rydberg series. Discrepancies between theory and experiment are observed at the series limits of the (1s 23?n?′) Rydberg series.
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