Publication details

Quantifying the U 5f covalence and degree of localization in U intermetallics

Authors

MARINO Andrea CHRISTOVAM Denise S. TAKEGAMI Daisuke FALKE Johannes CARVALHO Miguel M. F. OKAUCHI Takaki CHANG Chun-Fu ALTENDORF Simone G. AMORESE Andrea SUNDERMANN Martin GLOSKOVSKII Andrei GRETARSSON Hlynur KEIMER Bernhard ANDREEV Alexandr V. HAVELA Ladislav LEITHE-JASPER Andreas SEVERING Andrea KUNEŠ Jan TJENG Liu Hao HARIKI Atsushi

Year of publication 2024
Type Article in Periodical
Magazine / Source Physical Review Research
MU Faculty or unit

Faculty of Science

Citation
web https://doi.org/10.1103/PhysRevResearch.6.033068
Doi https://doi.org/10.1103/PhysRevResearch.6.033068
Keywords Heavy-fermion systems; Strongly correlated systems; Density functional theory; Dynamical mean field theory; X-ray photoelectron spectroscopy
Attached files
Description A procedure for quantifying the U 5f electronic covalency and degree of localization in U intermetallic compounds is presented. To this end, bulk sensitive hard and soft x-ray photoelectron spectroscopy were utilized in combination with density-functional theory (DFT) plus dynamical mean-field theory (DMFT) calculations. The energy dependence of the photoionization cross sections allows the disentanglement of the U 5f contribution to the valence band from the various other atomic subshells so the computational parameters in the DFT + DMFT can be reliably determined. Applying this method to UGa2 and UB2 as model compounds from opposite ends of the (de)localization range, we have achieved excellent simulations of the valence band and core-level spectra. The width in the distribution of atomic U 5f configurations contributing to the ground state, as obtained from the calculations, quantifies the correlated nature and degree of localization of the U 5f. The findings permit answering the longstanding question why different spectroscopic techniques give seemingly different numbers for the U 5f valence in intermetallic U compounds.

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