Quarter-Filled Honeycomb Lattice with a Quantized Hall Conductance

ORAL

Abstract

We study a generic two-dimensional hopping model on a honeycomb lattice with strong spin-orbit coupling, without the requirement that the half-filled lattice be a Topological Insulator. For quarter-(or three-quarter) filling, we show that a state with a quantized Hall conductance generically arises in the presence of a Zeeman field of sufficient strength. We discuss the influence of Hubbard interactions and argue that spontaneous ferromagnetism (which breaks time-reversal) will occur, leading to a quantized anomalous Hall effect. G. Murthy, E. Shimshoni, R. Shankar, and H. A. Fertig, arxiv:1108.2010[cond-mat.mes-hall]

*NSF and BSF

Authors

  • Efrat Shimshoni

    • Bar-Ilan University
  • Ganpathy Murthy

    • University of Kentucky
  • Ramamurti Shankar

    • Yale University
    • Yale Physics
  • Herbert Fertig

    • Indiana University
    • Indiana University, Bloomington