Publications
Hexagonal-shaped monolayer-bilayer quantum disks in graphene: A tight-binding approach
D. R. da Costa, M. Zarenia, Andrey Chaves, J. M. Pereira, Jr., G. A. Farias, and F. M. Peeters
Phys. Rev. B 94, 035415
2016
Abstract
Using the tight-binding approach, we investigate confined states in two different hybrid monolayer-bilayer systems: (i) a hexagonal monolayer area surrounded by bilayer graphene in the presence of a perpendicularly applied electric field and (ii) a hexagonal bilayer graphene dot surrounded by monolayer graphene. The dependence of the energy levels on dot size and external magnetic field is calculated. We find that the energy spectrum for quantum dots with zigzag edges consists of states inside the gap which range from dot-localized states, edge states, to mixed states coexisting together, whereas for dots with armchair edges, only dot-localized states are observed.
CONDENSED MATTER THEORY GROUP