Magnetic state of plutonium ion in metallic Pu and its compounds
A.O. Shorikov, A.V. Lukoyanov, M.A. Korotin, V.I. Anisimov

TL;DR
This study uses advanced computational methods to analyze the magnetic states and electronic structures of plutonium in various phases and compounds, revealing the delicate balance of interactions that determine their magnetic properties.
Contribution
It provides a detailed theoretical investigation of plutonium's magnetic states using LDA+U+SO, highlighting the importance of spin-orbit and exchange interactions in different plutonium compounds.
Findings
Metallic plutonium in both phases is nonmagnetic with f^6 configuration.
Pu compounds show varied magnetic moments and configurations, with some having f^5 and others f^6.
The balance between spin-orbit coupling and exchange interaction determines magnetic states.
Abstract
By LDA+U method with spin-orbit coupling (LDA+U+SO) the magnetic state and electronic structure have been investigated for plutonium in \delta and \alpha phases and for Pu compounds: PuN, PuCoGa5, PuRh2, PuSi2, PuTe, and PuSb. For metallic plutonium in both phases in agreement with experiment a nonmagnetic ground state was found with Pu ions in f^6 configuration with zero values of spin, orbital, and total moments. This result is determined by a strong spin-orbit coupling in 5f shell that gives in LDA calculation a pronounced splitting of 5f states on f^{5/2} and f^{7/2} subbands. A Fermi level is in a pseudogap between them, so that f^{5/2} subshell is already nearly completely filled with six electrons before Coulomb correlation effects were taken into account. The competition between spin-orbit coupling and exchange (Hund) interaction (favoring magnetic ground state) in 5f shell is…
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