Journal article

DIELECTRONIC AND RADIATIVE RECOMBINATION OF LITHIUM-LIKE GOLD


Authors listSPIES, W; MULLER, A; LINKEMANN, J; FRANK, A; WAGNER, M; KOZHUHAROV, C; FRANZKE, B; BECKERT, K; BOSCH, F; EICKHOFF, H; JUNG, M; KLEPPER, O; KONIG, W; MOKLER, PH; MOSHAMMER, R; NOLDEN, F; SCHAAF, U; SPADTKE, P; STECK, M; ZIMMERER, P; GRUN, N; SCHEID, W; PINDZOLA, MS; BADNELL, NR

Publication year1992

Pages2768-2771

JournalPhysical Review Letters

Volume number69

Issue number19

ISSN0031-9007

DOI Linkhttps://doi.org/10.1103/PhysRevLett.69.2768

PublisherAmerican Physical Society


Abstract
We report the first measurements on radiative and dielectronic recombination (RR and DR) of very highly charged ions at energies E(c.m.) as low as 0 to 50 eV. Novel techniques were employed at the heavy-ion storage ring ESR to obtain absolute recombination rates of Au76+(1s(2)2s). The increase of the RR rate for E(c.m) --> 0 could be recorded and single DR resonances in Au75+(1s(2)2p3/26l(j)) resolved. The experimental data allow sensitive judgement of calculations based on the Bethe-Salpeter approach to RR combined with results for DR from perturbative-relativistic, semirelativistic, and fully relativistic theories. Significant discrepancies are found only in the energy region of the 2p3/26l3/2 resonances.



Citation Styles

Harvard Citation styleSPIES, W., MULLER, A., LINKEMANN, J., FRANK, A., WAGNER, M., KOZHUHAROV, C., et al. (1992) DIELECTRONIC AND RADIATIVE RECOMBINATION OF LITHIUM-LIKE GOLD, Physical Review Letters, 69(19), pp. 2768-2771. https://doi.org/10.1103/PhysRevLett.69.2768

APA Citation styleSPIES, W., MULLER, A., LINKEMANN, J., FRANK, A., WAGNER, M., KOZHUHAROV, C., FRANZKE, B., BECKERT, K., BOSCH, F., EICKHOFF, H., JUNG, M., KLEPPER, O., KONIG, W., MOKLER, P., MOSHAMMER, R., NOLDEN, F., SCHAAF, U., SPADTKE, P., STECK, M., ...BADNELL, N. (1992). DIELECTRONIC AND RADIATIVE RECOMBINATION OF LITHIUM-LIKE GOLD. Physical Review Letters. 69(19), 2768-2771. https://doi.org/10.1103/PhysRevLett.69.2768



Keywords


AUGER RATESRESONANT TRANSFER

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