Journal article

Dielectronic recombination of U28+ atomic ions


Authors listMitnik, DM; Pindzola, MS; Robicheaux, F; Badnell, NR; Uwira, O; Muller, A; Frank, A; Linkemann, J; Spies, W; Angert, N; Mokler, PH; Becker, R; Kleinod, M; Ricz, S; Empacher, L

Publication year1998

Pages4365-4372

JournalPhysical review A

Volume number57

Issue number6

ISSN1050-2947

eISSN1094-1622

DOI Linkhttps://doi.org/10.1103/PhysRevA.57.4365

PublisherAmerican Physical Society


Abstract
Dielectronic recombination cross sections for U28+ are calculated in the distorted-wave approximation and compared with measurements obtained using an electron-ion merged beams apparatus. Although the experiment covered energies between 0 and 420 eV, the theoretical calculations were restricted to energies below 180 eV, where the most important resonance structures occur. The theoretical cross sections involving Delta n=0 excitations from the 5s(2)5p(2) ground configuration are found to be equally well described using either semirelativistic wave functions, as found in the AUTOSTRUCTURE codes, or fully relativistic wave functions, as found in the HULLAC codes. The main features of the experimental spectrum are well identified for the 80-180 eV energies, although complicated by the possible presence of unknown fractions of metastable levels. However, the resonance structures observed at the energies less than 80 eV, in the vicinity of a huge zero-energy peak, remain largely unexplained.



Citation Styles

Harvard Citation styleMitnik, D., Pindzola, M., Robicheaux, F., Badnell, N., Uwira, O., Muller, A., et al. (1998) Dielectronic recombination of U28+ atomic ions, PHYSICAL REVIEW A, 57(6), pp. 4365-4372. https://doi.org/10.1103/PhysRevA.57.4365

APA Citation styleMitnik, D., Pindzola, M., Robicheaux, F., Badnell, N., Uwira, O., Muller, A., Frank, A., Linkemann, J., Spies, W., Angert, N., Mokler, P., Becker, R., Kleinod, M., Ricz, S., & Empacher, L. (1998). Dielectronic recombination of U28+ atomic ions. PHYSICAL REVIEW A. 57(6), 4365-4372. https://doi.org/10.1103/PhysRevA.57.4365


Last updated on 2025-02-04 at 06:52