Finite-size corrections of defect energy levels involving ionic polarization

ORAL

Abstract

We develop a scheme for finite-size corrections of vertical transition energies and single-particle energy levels involving defect states with built-in ionic polarization in supercell calculations. The method accounts on an equal footing for the screening of the electrons and of the ionic polarization charge arising from the lattice distortions. We demonstrate the accuracy of our corrections for various defects in MgO and in water by comparing with the dilute limit achieved through the scaling of the system size. The general validity of our formulation is also confirmed through a sum rule that connects vertical transition energies with the formation energies of structurally relaxed defects.

*This work has been realized in relation to the National Center of Competence in Research (NCCR) ``Materials' Revolution: Computational Design and Discovery of Novel Materials (MARVEL)'' of the SNSF. The calculations have been performed at the Swiss National Supercomputing Centre (CSCS) (grant under projects ID s879 and mr25) and at SCITAS-EPFL.

Presenters

  • Stefano Falletta

    • Ecole Polytechnique Federale de Lausanne

Authors

  • Stefano Falletta

    • Ecole Polytechnique Federale de Lausanne
  • Julia Wiktor

    • Chalmers University of Technology
  • Alfredo Pasquarello

    • Ecole Polytechnique Federale de Lausanne