Abstract

A theoretical study of Auger cascades during the decay of 3${p}_{1/2}$ and 3${p}_{3/2}$ vacancies in krypton has been performed by level-by-level calculations using a wide configuration interaction basis. Auger spectra for all steps of the cascades are presented and are compared with the existing experimental data. Good agreement of our results with the branching ratios of ions measured by a coincidence technique is obtained.

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