First-principles study of the Kondo physics of a single Pu impurity in a Th host

Jian-Xin Zhu, R. C. Albers, K. Haule, and J. M. Wills
Phys. Rev. B 91, 165126 – Published 23 April 2015

Abstract

Based on its condensed-matter properties, crystal structure, and metallurgy, which includes a phase diagram with six allotropic phases, plutonium is one of the most complicated pure elements in its solid state. Its anomalous properties, which are indicative of a very strongly correlated state, are related to its special position in the periodic table, which is at the boundary between the light actinides that have itinerant 5f electrons and the heavy actinides that have localized 5f electrons. As a foundational study to probe the role of local electronic correlations in Pu, we use the local-density approximation together with a continuous-time quantum Monte Carlo simulation to investigate the electronic structure of a single Pu atom that is either substitutionally embedded in the bulk and or adsorbed on the surface of a Th host. This is a simpler case than the solid phases of Pu metal. For the Pu impurity atom we have found a Kondo resonance peak, which is an important signature of electronic correlations, in the local density of states around the Fermi energy. Furthermore, we show that the peak width of this resonance is narrower for Pu atoms at the surface of Th than for those in the bulk due to a weakened Pu5f hybridization with the ligands at the surface.

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  • Received 31 December 2014
  • Revised 16 March 2015

DOI:https://doi.org/10.1103/PhysRevB.91.165126

©2015 American Physical Society

Authors & Affiliations

Jian-Xin Zhu1,2,*, R. C. Albers1, K. Haule3, and J. M. Wills1

  • 1Theoretical Division, Los Alamos National Laboratory, Los Alamos, New Mexico 87545, USA
  • 2Center for Integrated Nanotechnologies, Los Alamos National Laboratory, Los Alamos, New Mexico 87545, USA
  • 3Department of Physics and Astronomy, Rutgers University, Piscataway, New Jersey 08854, USA

  • *Author to whom correspondence should be addressed: jxzhu@lanl.gov

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Issue

Vol. 91, Iss. 16 — 15 April 2015

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