User account menu

  • Log in
Home
Theoretical Spectroscopy Group

Main navigation

  • Home
  • People
    • Andrea Cucca
    • Christine Giorgetti
    • Francesco Sottile
    • Lucia Reining
    • Matteo Gatti
    • Valerie Veniard
    • Vitaly Gorelov
      • Fatema Mohamed
      • Kevin Leveque-Simon
      • Felana Andriambelaza
      • Maram Ali Ahmed Musa
      • Sarbajit Dutta
      • Marc Aichner
      • Carlos Rodriguez Perez
      • Jean Goossaert
      • Niklas Penner
    • Former Members
  • How to Reach Us
  • Research
    • Strong Correlation
    • Plasmons and EELS
    • Developments in TDDFT
    • Excitons and Exciton Dispersion
    • Larger Public
    • Low dimensional materials
    • Non-linear Optics
    • Scientific goals and main achievements
    • Theory Developments
    • Software
    • Publications
    • Thesis
  • Training
  • ETSF Events

Ab-initio calculation of the optical properties of surfaces

Breadcrumb

  • Home
  • Ab-initio calculation of the optical properties of surfaces
Author
G Onida
Rodolfo Del Sole
Maurizia Palummo
Olivia Pulci
Lucia Reining
Keywords
paper
Abstract

The recent development of computational methods using very large plane-wave basis sets, together with the large increase in computer performance, have now made it possible to compute the optical properties of real surfaces within a parameter-free approach. In this work, we describe a scheme for such a calculation, based on the state-of-the-art techniques for the computation of the ground and excited electronic states. We outline the advantages and the drawbacks related to the introduction of various approximation schemes, as well as the role of the most important convergence parameters. We present examples and applications to GaAs(110) and Si(100) surfaces, comparing the results with those of previous calculations, both semi-empirical and ab-initio, and with experimental data.

Year of Publication
1998
Journal
Phys. Stat. Sol. A
Volume
170
Number of Pages
365-375
Date Published
DEC 16
Download citation
  • Google Scholar
  • BibTeX
  • RIS

Developed & Designed by Alaa Haddad. Customized by ETSF Palaiseau © 2025.