paper

Sensitivity of x-ray absorption at edges of high-valent light actinides to crystal-field strength and covalency effects

arXiv:2507.10723

Abstract

The states were probed in ThO and U(VI) and U(V) oxides using x-ray absorption spectroscopy at the actinide edges. Measured data were analyzed by several approaches including atomic, crystal-field theory and the Anderson impurity model to take into account the hybridization of actinide valence states with oxygen states. For Th(IV), the states are mainly affected by the crystal-field interaction with the closest neighbors as can be seen from the corresponding spectrum of ThO. In turn, for U(VI) and U(V) oxides, the U -O hybridization and high degree of covalency in the chemical bonding play a decisive role increasing the occupancy and consequently governing the ground and excited state properties. That is additionally illustrated by results from the calculations of the U x-ray photoemission spectra for U(V) in the lattice of La-doped UO.