Wavelengths and Energy Levels for the Zn I Isoelectronic Sequence Ga1+ Through Xe24+

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Calculated and experimentally determined transition energies were compared for the Zn I iso-electronic sequence for the elements with atomic numbers Z = 31-54. Using the Hebrew University Lawrence Livermore Atomic Code, the excitation energies were calculated for the 109 levels belonging to the lowest 16 configurations of the types 4l4l' and 4l5l'. The analysis of the energy-level structure along the isoelectronic sequence accounted for a number of avoided level crossings. The differences between the calculated and experimental transition energies were determined for 24 transitions among the 4s2, 4s4p, 4p2, 4s4d, and 4s4f configurations. Wavelengths were predicted for previously unobserved transitions in the highly charged ions.

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