학술논문

From antiferromagnetic and hidden order to Pauli paramagnetism in U M ₂Si₂ compounds with 5 f electron duality
Document Type
research-article
Source
Proceedings of the National Academy of Sciences of the United States of America, 2020 Dec 01. 117(48), 30220-30227.
Subject
Language
English
ISSN
00278424
10916490
Abstract
Using inelastic X-ray scattering beyond the dipole limit and hard X-ray photoelectron spectroscopy we establish the dual nature of the U 5 f electrons in U M ₂Si₂ ( M = Pd, Ni, Ru, Fe), regardless of their degree of delocalization. We have observed that the compounds have in common a local atomic-like state that is well described by the U 5 f ² configuration with the Γ 1 ( 1 ) and Γ₂ quasi-doublet symmetry. The amount of the U 5 f ³ configuration, however, varies considerably across the U M ₂Si₂ series, indicating an increase of U 5 f itineracy in going from M = Pd to Ni to Ru and to the Fe compound. The identified electronic states explain the formation of the very large ordered magnetic moments in UPd₂Si₂ and UNi₂Si₂, the availability of orbital degrees of freedom needed for the hidden order in URu₂Si₂ to occur, as well as the appearance of Pauli paramagnetism in UFe₂Si₂. A unified and systematic picture of the U M ₂Si₂ compounds may now be drawn, thereby providing suggestions for additional experiments to induce hidden order and/or superconductivity in U compounds with the tetragonal body-centered ThCr₂Si₂ structure.