Abstract

Many-body perturbation theory is applied to calculate the KLL Auger rates of all terms of atoms C, N, F and Ne. Theoretical rates are compared with experiment and other theories for Ne and O. A new set of the Auger satellites, corresponding to the main photoelectron line binding energy is proposed. The intensities of these satellites are calculated and some of these satellites are identified in experimental KLL Auger spectra of Ne.

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