English

Floquet bound states around defects and adatoms in graphene

Mesoscale and Nanoscale Physics 2016-07-15 v1

Abstract

Recent studies have focused on laser-induced gaps in graphene which have been shown to have a topological origin, thereby hosting robust states at the sample edges. While the focus has remained mainly on these topological chiral edge states, the Floquet bound states around defects lack a detailed study. In this paper we present such a study covering large defects of different shape and also vacancy-like defects and adatoms at the dynamical gap at Ω/2\hbar\Omega/2 (Ω\hbar\Omega being the photon energy). Our results, based on analytical calculations as well as numerics for full tight-binding models, show that the bound states are chiral and appear in a number which grows with the defect size. Furthermore, while the bound states exist regardless the type of the defect's edge termination (zigzag, armchair, mixed), the spectrum is strongly dependent on it. In the case of top adatoms, the bound states quasi-energies depend on the adatoms energy. The appearance of such bound states might open the door to the presence of topological effects on the bulk transport properties of dirty graphene.

Keywords

Cite

@article{arxiv.1603.04398,
  title  = {Floquet bound states around defects and adatoms in graphene},
  author = {D. A. Lovey and Gonzalo Usaj and L. E. F. Foa Torres and C. A. Balseiro},
  journal= {arXiv preprint arXiv:1603.04398},
  year   = {2016}
}

Comments

16 pages, 14 figures