Passer à la navigation principale Passer à la recherche Passer au contenu principal

Long-range contribution to the exchange-correlation kernel of time-dependent density functional theory

  • Silvana Botti
  • , Francesco Sottile
  • , Nathalie Vast
  • , Valerio Olevano
  • , Lucia Reining
  • , Hans Christian Weissker
  • , Angel Rubio
  • , Giovanni Onida
  • , Rodolfo Del Sole
  • , R. W. Godby
  • Laboratoire des Solides Irradiés
  • Friedrich-Schiller University
  • University of the Basque Country
  • University of Milano
  • University of Rome “Tor Vergata”
  • University of York

Résultats de recherche: Contribution à un journalArticleRevue par des pairs

Résumé

We discuss the effects of a static long-range contribution - α/q 2 to the exchange-correlation kernel fxc(q) of time-dependent density functional theory. We show that the optical absorption spectrum of solids exhibiting a strong continuum excitonic effect is considerably improved with respect to calculations where the adiabatic local-density approximation is used. We discuss the limitations of this simple approach, and in particular that the same improvement cannot be found for the whole spectral range including the valence plasmons and bound excitons. On the other hand, we also show that within the range of validity of the method, the parameter a depends linearly on the inverse of the dielectric constant, and we demonstrate that this fact can be used to predict continuum excitonic effects in semiconductors. Results are shown for the real and imaginary part of the dielectric function of Si, GaAs, AlAs, diamond, MgO, SiC and Ge, and for the loss function of Si.

langue originaleAnglais
Numéro d'article155112
Pages (de - à)155112-1-155112-14
journalPhysical Review B - Condensed Matter and Materials Physics
Volume69
Numéro de publication15
Les DOIs
étatPublié - 1 avr. 2004

Empreinte digitale

Examiner les sujets de recherche de « Long-range contribution to the exchange-correlation kernel of time-dependent density functional theory ». Ensemble, ils forment une empreinte digitale unique.

Contient cette citation