INVESTIGADORES
USAJ Gonzalo
artículos
Título:
Bilayer graphene under pressure: Electron-hole symmetry breaking, valley Hall effect, and Landau levels
Autor/es:
F. MUNOZ; HECTOR PABLO OJEDA COLLADO; GONZALO USAJ; JORGE O. SOFO; C. A. BALSEIRO
Revista:
PHYSICAL REVIEW B
Editorial:
AMER PHYSICAL SOC
Referencias:
Lugar: New York; Año: 2016 vol. 93 p. 235443 - 235443
ISSN:
1098-0121
Resumen:
The electronic structure of bilayer graphene under pressure develops very interesting features with an enhancement of the trigonal warping and a splitting of the parabolic touching bands at the K point of the reciprocal space into four Dirac cones, one at K and three along the T symmetry lines. As pressure is increased, these cones separate in  reciprocal space and in energy, breaking the electron-hole symmetry. Due to their energy separation, their opposite Berry curvature can be observed in valley Hall effect experiments and in the structure of the Landau levels. Based on the electronic structure obtained by density functional theory, we develop a low energy Hamiltonian that describes the effects of pressure on measurable quantities such as the Hall conductivityand the Landau levels of the system.