English

Puddle-induced resistance oscillations in the breakdown of the graphene quantum Hall effect

Mesoscale and Nanoscale Physics 2019-03-26 v1

Abstract

We report on the stability of the quantum Hall plateau in wide Hall bars made from a chemically gated graphene film grown on SiC. The ν=2\nu=2 quantized plateau appears from fields B5B \simeq 5 T and persists up to B80B \simeq 80 T. At high current density, in the breakdown regime, the longitudinal resistance oscillates with a 1/B1/B periodicity and an anomalous phase, which we relate to the presence of additional electron reservoirs. The high field experimental data suggest that these reservoirs induce a continuous increase of the carrier density up to the highest available magnetic field, thus enlarging the quantum plateaus. These in-plane inhomogeneities, in the form of high carrier density graphene pockets, modulate the quantum Hall effect breakdown and decrease the breakdown current.

Keywords

Cite

@article{arxiv.1611.08179,
  title  = {Puddle-induced resistance oscillations in the breakdown of the graphene quantum Hall effect},
  author = {M. Yang and O. Couturaud and W. Desrat and C. Consejo and D. Kazazis and R. Yakimova and M. Syväjärvi and M. Goiran and J. Béard and P. Frings and M. Pierre and A. Cresti and W. Escoffier and B. Jouault},
  journal= {arXiv preprint arXiv:1611.08179},
  year   = {2019}
}

Comments

accepted in Physical Review Letter in November, 2016