English

Studies of the Temperature-Driven Flow Lines and Phase Transitions in a Two-Dimensional Si/SiGe Hole System

Mesoscale and Nanoscale Physics 2007-05-23 v2

Abstract

We have performed low-temperature transport experiments on a Si/SiGe hole system. The measured transverse and longitudinal condductivities σxx\sigma_{xx} and σxy\sigma_{xy} allow us to study the magnetic-field-induced transitions in the system. In particular, we present the first study of the temperature-driven flow lines in the "anomalous Hall insulator" regime near a Landau level filling factor ν=1.5\nu=1.5. The "anomalous" temperature-driven flow lines could be due to the unusual energy level scheme in a Si/SiGe hole system. Moreover, for 3<ν<53<\nu<5, there is a temperature-independent point in ρxx(B)\rho_{xx} (B), ρxy(B)\rho_{xy} (B), σxx\sigma_{xx}, and σxy\sigma_{xy} which corresponds to a boundary of the quantum phase transition.

Keywords

Cite

@article{arxiv.cond-mat/0201333,
  title  = {Studies of the Temperature-Driven Flow Lines and Phase Transitions in a Two-Dimensional Si/SiGe Hole System},
  author = {C. T. Liang and C. F. Huang and Yu-Ming Cheng and Tsai-Yu Huang and Y. H. Chang and Y. F. Chen},
  journal= {arXiv preprint arXiv:cond-mat/0201333},
  year   = {2007}
}

Comments

We correct the errors about the formats for figures in the PDF file