English

Self-interaction Corrected Local Spin Density Theory of 5f Electron Localization in Actindes

Strongly Correlated Electrons 2009-11-11 v3

Abstract

The electronic structures of the actinide elements U, Np, Pu, Am, Cm and Bk are investigated within the self-interaction corrected local spin density approximation. This method allows to describe a dual character of the 5f electrons, some of which occupy localized and core-like states, while the remaining 5f electrons hybridize and form bands. Based on energetics the calculations predict delocalization/paramagnetism in the early actinides, and localization/anti-ferromagnetism in the later actinides. The corresponding calculated equilibrium volumes are in agreement with the experimental values. For Pu and Am, the method wrongly predicts magnetic ordering, but we find that the paramagnetic state gives a better desciption of cohesive properties. Under compression, in the later actinides, a localization-delocalization transition happens gradually as more and more f electrons become band-like with decreasing volume. Pu is already at this transition point at ambient conditions. Delocalization sets in for Am and Bk at a compression of V0.75V0V\sim 0.75V_0, for Cm at V0.60V0V\sim 0.60 V_0, where V_0 is the equilibrium volume, and the transition is complete for V0.40.5V0V\sim 0.4-0.5 V_0 in these three elements.

Keywords

Cite

@article{arxiv.cond-mat/0610146,
  title  = {Self-interaction Corrected Local Spin Density Theory of 5f Electron Localization in Actindes},
  author = {A. Svane and L. Petit and Z. Szotek and W. M. Temmerman},
  journal= {arXiv preprint arXiv:cond-mat/0610146},
  year   = {2009}
}

Comments

13 pages, 10 figures; revised manuscript