paper

Intrinsic quantized anomalous Hall effect in a moiré heterostructure

arXiv:1907.00261 · doi:10.1126/science.aay5533

Abstract

We report the observation of a quantum anomalous Hall effect in twisted bilayer graphene showing Hall resistance quantized to within .1\% of the von Klitzing constant at zero magnetic field.The effect is driven by intrinsic strong correlations, which polarize the electron system into a single spin and valley resolved moiré miniband with Chern number . In contrast to extrinsic, magnetically doped systems, the measured transport energy gap ~K is larger than the Curie temperature for magnetic ordering ~K, and Hall quantization persists to temperatures of several Kelvin. Remarkably, we find that electrical currents as small as 1~nA can be used to controllably switch the magnetic order between states of opposite polarization, forming an electrically rewritable magnetic memory.

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