Abstract
Consistent and extended new experimental data on the 6snd 1D2 series via 6s6p 1P1 and the 6snd 3D2 series excited via a 6s6p 3P1 intermediate state are acquired up to a high principal quantum number, by employing a two-step excitation technique in conjunction with a thermionic diode ion detector. Our data clearly reveals intensity variations and the dominant contribution of the corresponding series in the vicinity of the 5d7d 1D2 perturbing level. In addition, the inter-channel interaction in the perturbed region is analyzed using the phase-shifted formalism of quantum defect theory.
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