Abstract

Energies and transition parameters such as wavelengths, transition probabilities (rates) and oscillator strengths for the electric dipole (E1) transitions have been reported for triply ionized krypton (Z = 36), xenon (Z = 54) and radon (Z = 86) using the general-purpose relativistic atomic structure package based on a fully relativistic multiconfiguration Dirac–Fock method. The Breit interactions for the relativistic effects, quantum electrodynamical contributions and correlation effects have been included in calculations. Obtained results have been compared with available theoretical and experimental values in the literature. Most of results, in particular for Rn IV, have been presented firstly.

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