Localization versus hybridization of states in actinide and lanthanide dioxides probed in core-level photoemission spectra
arXiv:2505.14284
Abstract
The degrees of the localization and hybridization of the valence states/covalency of the chemical bonding in actinide and lanthanide dioxides were investigated using the atomic, crystal-field multiplet and Anderson impurity model (AIM) approaches to calculate actinide and lanthanide x-ray photoemission spectra (XPS). The actinide XPS can be largely described within atomic, crystal-field multiplet theory due to an extended multiplet structure as a result of the strong interaction of electrons with a core hole. The multiplet structure was found to be quite sensitive to the oxidation state of actinides. In turn, the lanthanide XPS description requires the AIM-type of calculations due to significant O hybridization effects. As a result derived from the analysis of the XPS spectra, an increase in the -shell occupancy in the ground state due to the O hybridization and covalency of the chemical bonding appears to be higher in lanthanide dioxides as compared to actinide dioxides.