Absolute rate coefficients for dielectronic recombination (DR) of H-like U91+ions have been measured. The electron-ion merged-beam technique at a heavy-ion storage ring was employed using a stochastically cooled ion beam. Thereby, the previously accessible electron-ion collision energies could be greatly extended to the range 63–90 keV. High-resolution DR spectra were measured covering all KLL and KLM resonances. For the resonance strengths, excellent agreement between relativistic theory and experiment is found only if the Breit contribution to the electron-electron interaction is included in the calculations. For the KL1/2L1/2 and KL1/2M1/2groups the Breit contribution amounts to 44% of their total resonance strengths
We have measured dissociative recombination (DR) of HCl<sup>+</sup> with electrons using a merged be...
This research was sponsored by the National Science Foundation Grant NSF PHY-931478
We have calculated total and final-state resolved partial dielectronic recombination (DR) rate coeff...
Absolute rate coefficients for dielectronic recombination (DR) of H-like U91+ ions have been measure...
We report a measurement of KLL dielectronic recombination in charge states from Kr<sup>+34</sup> thr...
Resonant strengths have been measured for dielectronic recombination of Li-like iodine, holmium, and...
Dielectronicrecombination resonance strengths for the KLL and KLM manifolds were measured for variou...
Theoretical and experimental resonance strengths for KLL dielectronic recombination (DR) into He-, L...
Recombination of fully stripped U92+ ions with electrons has been investigated at the Experimental S...
Until 1983 the only experimental information on DR had come from spectroscopic observations of plasm...
The absolute rate coefficients for dielectronic recombination (DR) of sodiumlike krypton ions were m...
Journals published by the American Physical Society can be found at http://publish.aps.org/Relative ...
Electron-ion recombination rate coefficients for fluorine-like nickel ions have been measured by emp...
Theoretical and experimental resonance strengths for KLL dielectronic recombination (DR) into He-, L...
Results of the calculations of differential L−shell radiative recombination (RR) rate coefficients f...
We have measured dissociative recombination (DR) of HCl<sup>+</sup> with electrons using a merged be...
This research was sponsored by the National Science Foundation Grant NSF PHY-931478
We have calculated total and final-state resolved partial dielectronic recombination (DR) rate coeff...
Absolute rate coefficients for dielectronic recombination (DR) of H-like U91+ ions have been measure...
We report a measurement of KLL dielectronic recombination in charge states from Kr<sup>+34</sup> thr...
Resonant strengths have been measured for dielectronic recombination of Li-like iodine, holmium, and...
Dielectronicrecombination resonance strengths for the KLL and KLM manifolds were measured for variou...
Theoretical and experimental resonance strengths for KLL dielectronic recombination (DR) into He-, L...
Recombination of fully stripped U92+ ions with electrons has been investigated at the Experimental S...
Until 1983 the only experimental information on DR had come from spectroscopic observations of plasm...
The absolute rate coefficients for dielectronic recombination (DR) of sodiumlike krypton ions were m...
Journals published by the American Physical Society can be found at http://publish.aps.org/Relative ...
Electron-ion recombination rate coefficients for fluorine-like nickel ions have been measured by emp...
Theoretical and experimental resonance strengths for KLL dielectronic recombination (DR) into He-, L...
Results of the calculations of differential L−shell radiative recombination (RR) rate coefficients f...
We have measured dissociative recombination (DR) of HCl<sup>+</sup> with electrons using a merged be...
This research was sponsored by the National Science Foundation Grant NSF PHY-931478
We have calculated total and final-state resolved partial dielectronic recombination (DR) rate coeff...