Landau level transitions indoped graphene in a time dependent magnetic field
arXiv:1307.8056 · doi:10.1016/j.physb.2013.06.037
Abstract
The aim of this work is to describe the Landau levels transitions of Bloch electrons in doped graphene with an arbitrary time dependent magnetic field in the long wavelength approximation. In particular, transitions from the m Landau level to the m + 1 and m + 2 Landau levels are studied using time-dependent perturbation theory. Time intervals are computed in which transition probabilities tend to zero at low order in the coupling constant. In particular, Landau level transitions are studied in the case of Bloch electrons travelling in the direction of the applied magnetic force and the results are compared with classical and revival periods of electrical current in graphene. Finally, current probabilities are computed for the n = 0 and n = 1 Landau levels showing expected oscillating behavior with modified cyclotron frequency.
18 pages, 7 figures
References in corpus (10)
- Electric Field Effect in Atomically Thin Carbon Films
- The electronic properties of graphene
- Giant Intrinsic Carrier Mobilities in Graphene and Its Bilayer
- Unconventional Integer Quantum Hall effect in graphene
- Landau level spectroscopy of ultrathin graphite layers
- Infrared spectroscopy of Landau levels in graphene
- Scanning Tunneling Spectroscopy of Graphene on Graphite
- The zero-energy state in graphene in a high magnetic field
- Cyclotron Resonance study of the electron and hole velocity in graphene monolayers
- Divergent resistance at the Dirac point in graphene: Evidence for a transition in a high magnetic field
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- Influence of temperature on the magnetic oscillations in graphene with spin splitting: a new approach
- Temperature effect on the magnetic oscillations in 2D materials
- Zero energy mode for an electron in graphene in a perpendicular magnetic field with constant asymptotics