English

Organic Molecules on Wide-Gap Insulators: Electronic Excitations

Mesoscale and Nanoscale Physics 2011-03-23 v2

Abstract

The electronic excitation of a conjugated molecule-insulator interface, as exemplified by the adsorption of benzoic acid and its phenolic derivative on NaCl(001) surface, is addressed by many-body Green's function methods. By solving the two-particle Bethe-Salpeter equation on top of the GWGW quasiparticle energies, it turns out that instead of the intramolecular ππ\pi-\pi^\ast transition of the adsorbate, the lowest singlet excited state of the adsorbate system, being a charge transfer excitonic effect, is essentially assigned to the transition from the surface valence band maximum to the ππ\pi-\pi^\ast state of the molecule. An accurate description of this lowest electronic excitations confined at the interface requires the knowledge of a full excitonic Hamiltonian due to the sizable electron-hole exchange interaction.

Keywords

Cite

@article{arxiv.1103.3055,
  title  = {Organic Molecules on Wide-Gap Insulators: Electronic Excitations},
  author = {Wei Chen and Christoph Tegenkamp and Herbert Pfnür},
  journal= {arXiv preprint arXiv:1103.3055},
  year   = {2011}
}

Comments

5 pages, 3 figures

R2 v1 2026-06-21T17:40:02.167Z