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.

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