Kronig-Penney model on bilayer graphene: spectrum and transmission periodic in the strength of the barriers
arXiv:1101.4094 · doi:10.1103/PhysRevB.82.235408
Abstract
We show that the transmission through single and double δ-function potential barriers of strength P in bilayer graphene is periodic in P with period π. For a certain range of P values we find states that are bound to the potential barrier and that run along the potential barrier. Similar periodic behaviour is found for the conductance. The spectrum of a periodic succession of δ-function barriers (Kronig-Penney model) in bilayer graphene is periodic in P with period 2π. For P smaller than a critical value, the spectrum exhibits two Dirac points while for P larger than this value an energy gap opens. These results are extended to the case of a superlattice of δ-function barriers with P alternating in sign between successive barriers; the corresponding spectrum is periodic in P with period π.
11 pages, 12 figures
References in corpus (14)
- Electric Field Effect in Atomically Thin Carbon Films
- The electronic properties of graphene
- Chiral tunneling and the Klein paradox in graphene
- Andreev reflection and Klein tunneling in graphene
- Quantum interference and Klein tunneling in graphene heterojunctions
- Evidence of Klein tunneling in graphene p-n junctions
- Anisotropic behaviors of massless Dirac fermions in graphene under periodic potential
- Quantum dots in graphene
- Klein Backscattering and Fabry-Perot Interference in Graphene Heterojunctions
- Dirac and Klein-Gordon particles in one-dimensional periodic potentials
- Quasi-bound states of quantum dots in single and bilayer graphene
- Ballistic transmission through a graphene bilayer
- Electron optics with magnetic vector potential barriers in graphene
- Bilayer graphene with single and multiple electrostatic barriers: band structure and transmission
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