Density functional study of the actinide nitrides
Raymond Atta-Fynn, Asok K. Ray

TL;DR
This study uses advanced density functional theory calculations to systematically analyze the structural, electronic, and magnetic properties of actinide nitrides, revealing their ground states and electron behaviors.
Contribution
It provides a comprehensive theoretical investigation of actinide nitrides using FP-LAPW + lo method with GGA-DFT, including spin-orbit coupling effects, which is novel in this context.
Findings
AcN, ThN, and PaN are non-magnetic in their ground states.
UN, NpN, PuN, and AmN are ferromagnetic with spin-orbit coupling.
The study discusses 5f electron localization and delocalization in these compounds.
Abstract
The full potential all electron linearized augmented plane wave plus local orbitals (FP-LAPW + lo) method, as implemented in the suite of software WIEN2K, has been used to systematically investigate the structural, electronic, and magnetic properties of the actinide compounds AnN (An = Ac, Th, Pa, U, Np, Pu, Am). The theoretical formalism used is the generalized gradient approximation to density functional theory (GGA-DFT) with the Perdew-Burke-Ernzerhof (PBE) exchange-correlation functional. Each compound has been studied at six levels of theory: non-magnetic (NM), non-magnetic with spin-orbit coupling (NM+SOC), ferromagnetic (FM), ferromagnetic with spin-orbit coupling (FM+SOC), anti-ferromagnetic (AFM), and anti-ferromagnetic with spin-orbit coupling (AFM+SOC). The structural parameters, bulk moduli, densities of states, and charge distributions have been computed and compared to…
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