Strictly localized basis sets for Uranium and Plutonium

ORAL

Abstract

The properties of allotropes and selected compounds of plutonium (Pu) and uranium (U) are evaluated using a first-principles approach with strictly localized basis sets as implemented in the density functional theory code SIESTA. The lattice parameters, first-order elastic properties, and phonon density of states of the allotropes and compounds are in good agreement with available experimental data and prior calculations based on plane-wave methodologies. The advantage of the localized basis set approach is a good balance between speed and accuracy, which is demonstrated by modeling, for the first time, the properties of large systems of U using parameter-free ab initio molecular dynamics.

*This work was carried out under the auspices of the U.S. DOE NNSA (Contract No. 89233218CNA000001) and was supported by the LANL LDRD program.

Presenters

  • Raymond Atta-Fynn

    • Los Alamos National Lab

Authors

  • Raymond Atta-Fynn

    • Los Alamos National Lab
  • Sarah C Hernandez

    • Los Alamos National Laboratory
  • Roxanne M Tutchton

    • Los Alamos National Laboratory