Abstract
Relativistic calculations of nonradiative transition rates to K-, L-, and M-shell vacancy states in Ni-, Cu-, and Zn-like ions with Z=32, 36, 42, 47, 56, 60, 66, 74, 83, and 92 are performed. Auger and Coster–Kronig transition probabilities are calculated using both Dirac–Hartree–Fock and model-potential wave functions. Tabulated data are presented for K- and L-shell Auger rates in Ni-, Cu-, and Zn-like ions, for M-shell Auger rates in Zn-like ions, and for L- and M-shell Coster–Kronig rates in Cu-like ions. Results obtained by averaging over angular momentum substates are also presented and semiempirical formulas are given for the average rates.
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