Impurity states and Localization in Bilayer Graphene: the Low Impurity Concentration Regime
arXiv:1902.00034 · doi:10.1088/1742-6596/568/5/052003
Abstract
We study the problem of non-magnetic impurities adsorbed on bilayer graphene in the diluted regime. We analyze the impurity spectral densities for various concentrations and gate fields. We also analyze the effect of the adsorbate on the local density of states (LDOS) of the different C atoms in the structure and present some evidence of strong localization for the electronic states with energies close to the Dirac point.
5 pages, 2 figures, proceedings of 27th International Conference on Low Temperature Physics (LT27)
References in corpus (13)
- The electronic properties of graphene
- Biased bilayer graphene: semiconductor with a gap tunable by electric field effect
- Asymmetry gap in the electronic band structure of bilayer graphene
- The electronic properties of bilayer graphene
- The Kernel Polynomial Method
- Electronic states and Landau levels in graphene stacks
- Electron transport in disordered graphene
- Modeling disorder in graphene
- Modeling electronic structure and transport properties of graphene with resonant scattering centers
- Colossal negative magnetoresistance in dilute fluorinated graphene
- Chebyshev-BdG: an efficient numerical approach to inhomogeneous superconductivity
- Disorder-induced tail states in a gapped bilayer graphene
- Localized states due to expulsion of resonant impurity levels from the continuum in bilayer graphene