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Effects of correlations on honeycomb lattice in ionic-Hubbard Model

Strongly Correlated Electrons 2015-08-18 v3

Abstract

In a honeycomb lattice the symmetry has been broken by adding an ionic potential and a single-particle gap was generated in the spectrum. We have employed the iterative perturbation theory (IPT) in dynamical mean field approximation method to study the effects of competition between UU and Δ\Delta on energy gap and renormalized Fermi velocity. We found, the competition between the single-particle gap parameter and the Hubbard potential closed the energy gap and restored the semi-metal phase, then the gap is opened again in Mott insulator phase. For a fixed Δ\Delta by increasing UU, the renormalized Fermi velocity vF~\tilde{v_F} is decreased, but change in Δ\Delta, for a fixed UU, has no effects on vF~\tilde{v_F}. The difference in filling factor is calculated for various number of U, ΔU, ~\Delta. The results of this study can be implicated for gapped graphene e.g. hydrogenated graphene.

Keywords

Cite

@article{arxiv.1412.0079,
  title  = {Effects of correlations on honeycomb lattice in ionic-Hubbard Model},
  author = {M. Ebrahimkhas and Z. Drezhegrighash and E. Soltani},
  journal= {arXiv preprint arXiv:1412.0079},
  year   = {2015}
}

Comments

7 pages, 3 figure