High-resolution measurements of oxygen K Auger electrons have been performed using multiply charged 10-MeV Oⁿ⁺ (n=2, 3, and 4) projectiles in collisions with He. Line-broadening effects are strongly reduced so that high-resolution spectroscopy is possible for Auger electrons ejected from fast projectiles. The spectra obtained for O⁴⁺ and O³⁺ impact show relatively simple structures dominated by lines arising from three-electron (Li-like) and four-electron (Be-like) states, respectively. Using configuration-interaction wave functions, the relativistic energies and fine structures of Li-like states are studied. The relativistic correction, Breit-Pauli operator, and mass-polarization effect are calculated for numerous resonances and metastable autoionizing states in O vi. Excellent agreement with experimental data is obtained. For example, the calculated transition energy of the (1s2s2p)⁴P^∘{} state is 416.02 eV. It is to be compared with the corresponding experimental data of 416.0±{}0.2 eV.
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Bruch et al. (1987) studied this question.
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