Journalartikel
Autorenliste: Böhm, S; Schippers, S; Shi, W; Müller, A; Eklöw, N; Schuch, R; Danared, H; Badnell, NR; Mitnik, DM; Griffin, DC
Jahr der Veröffentlichung: 2002
Zeitschrift: Physical review A
Bandnummer: 65
Heftnummer: 5
ISSN: 1050-2947
eISSN: 1094-1622
DOI Link: https://doi.org/10.1103/PhysRevA.65.052728
Verlag: American Physical Society
Abstract:
The influence of electromagnetic fields on the dielectronic recombination of O5+ ions has been measured at the Stockholm heavy ion storage ring CRYRING. The experimental energy range covered all 2s-->2p Deltan=0 resonances. Electric fields up to 600 V/cm were applied and a noticeable enhancement of the dielectronic recombination cross section as a function of electric-field strength was observed. Field ionization of highly exited Rydberg states was used to investigate the enhancement of the recombination rate for two narrow bands of n states ranging from napproximate to19-22 and from napproximate to23-25. The experimental data are compared to theory. After applying a field-ionization model to the calculations, the field-free spectra show good agreement with the experimental data. Although experiment and theory show the same trend of increasing strength of dielectronic recombination with increasing external electric field and with increasing n, quantitative discrepancies remain.
Autoren/Herausgeber
Zitierstile
Harvard-Zitierstil: Böhm, S., Schippers, S., Shi, W., Müller, A., Eklöw, N., Schuch, R., et al. (2002) Measurement of the field-induced dielectronic-recombination-rate enhancement of O5+ ions differential in the Rydberg quantum number n, Physical review A, 65(5), Article 052728. https://doi.org/10.1103/PhysRevA.65.052728
APA-Zitierstil: Böhm, S., Schippers, S., Shi, W., Müller, A., Eklöw, N., Schuch, R., Danared, H., Badnell, N., Mitnik, D., & Griffin, D. (2002). Measurement of the field-induced dielectronic-recombination-rate enhancement of O5+ ions differential in the Rydberg quantum number n. Physical review A. 65(5), Article 052728. https://doi.org/10.1103/PhysRevA.65.052728
Schlagwörter
ELECTRIC-FIELD; INTERACTING RESONANCES; RATE COEFFICIENTS