English

Evolution of the 7/2 fractional quantum Hall state in two-subband systems

Mesoscale and Nanoscale Physics 2012-03-06 v1

Abstract

We report the evolution of the fractional quantum Hall state (FQHS) at even-denominator filling factor ν=7/2\nu=7/2 in wide GaAs quantum wells in which electrons occupy two electric subbands. The data reveal subtle and distinct evolutions as a function of density, magnetic field tilt-angle, or symmetry of the charge distribution. When the charge distribution is strongly asymmetric, there is a remarkable persistence of a resistance minimum near ν=7/2\nu=7/2 when two Landau levels belonging to the two subbands cross at the Fermi energy. The field position of this minimum tracks the 5/2 filling of the symmetric subband, suggesting a pinning of the crossing levels and a developing 5/2 FQHS in the symmetric subband even when the antisymmetric level is partially filled.

Keywords

Cite

@article{arxiv.1109.1491,
  title  = {Evolution of the 7/2 fractional quantum Hall state in two-subband systems},
  author = {Yang Liu and J. Shabani and D. Kamburov and M. Shayegan and L. N. Pfeiffer and K. W. West and K. W. Baldwin},
  journal= {arXiv preprint arXiv:1109.1491},
  year   = {2012}
}