Relaxation of Actinide Surfaces: An All Electron Study

ORAL

Abstract

Fully relativistic full potential density functional calculations with a linearized augmented plane wave plus local orbitals basis (LAPW + lo) have been performed to investigate the relaxations of heavy actinide surfaces, namely the (111) surface of fcc $\delta $-Pu and the (0001) surface of dhcp Am using WIEN2k. This code uses the LAPW + lo method with the unit cell divided into non-overlapping atom-centered spheres and an interstitial region. The APW+lo basis is used to describe all s, p, d, and f states and LAPW basis to describe all higher angular momentum states. Each surface was modeled by a three-layer periodic slab separated by 60 Bohr vacuum with four atoms per surface unit cell. In general, we have found a contraction of the interlayer separations for both Pu and Am. We will report, in detail, the electronic and geometric structures of the relaxed surfaces and comparisons with the respective non-relaxed surfaces.

*This work is supported by the U. S. Department of Energy and the Welch Foundation.

Authors

  • Raymond Atta-Fynn

  • Pratik Dholabhai

  • Asok Ray

    • Physics Department, The University of Texas at Arlington, Arlington, TX 76019
    • Physics Department, University of Texas at Arlington, Arlington, Texas 76019
    • Department of Physics, University of Texas at Arlington, TX-76019