November 2023

Journal

Magnetic structure of UO2 and NpO2 by first-principle methods

By:
Pegg, James; Shields, Ashley E; Storr, Mark; Wills, Andrew; Scanlon, David; de Leeuw, Nora
Journal Name:
Physical Chemistry Chemical Physics
Page Number:
760-771
Volume:
21
Issue Number:
2
Publication Date:
November 9, 2023
View DOI Listing:
https://doi.org/10.1039/C8CP03581D

Abstract

The magnetic structure of the actinide dioxides (AnO2) remains a field of intense research. A low-temperature experimental investigation of the magnetic ground-state is complicated by thermal energy released from the radioactive decay of the actinide nuclei. To establish the magnetic ground-state, we have employed high-accuracy computational methods to systematically probe different magnetic structures. A transverse 1k antiferromagnetic ground-state with Fmmm (No. 69) crystal symmetry has been established for UO2, whereas a ferromagnetic (111) ground-state with R[3 with combining macron]m (No. 166) has been established for NpO2. Band structure calculations have been performed to analyse these results.


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