Extracting Excited States Energies from a Density Functional Database.

ORAL

Abstract

The development of new computational tools is greatly helped by testing any new method on small and well-known systems, such as rare earth atoms, whose properties are well established through experiments and calculations, such as density functional theory (DFT). Such calculations can run fairly faster than those of molecules or clusters. Here we present a method for approaching configuration interaction accuracy by analyzing all the non self consistent data that is encountered during the path to self consistency. Our results have employed density functional approximations but our method can use data from any and all single determinantal data base(s). Applications of our method to core and valence level excitations of rare earth atoms are presented.

*The research described in this presentation was conducted under the Laboratory Directed Research and Development Program (Project number 209668, NM1103) at Pacific Northwest National Laboratory, a multiprogram national laboratory operated by Battelle for the U.S. Department of Energy.

Presenters

  • Jose Gustavo Bravo Flores

    • University of Texas at El Paso

Authors

  • Jose Gustavo Bravo Flores

    • University of Texas at El Paso
  • Mark R Pederson

    • University of Texas at El Paso
  • Koblar A Jackson

    • Central Michigan Univ
  • Kushantha Withanage

    • University of Texas El Paso
  • Alexander I Johnson

    • University of Texas at El Paso