paper

Emergent ferromagnetism near three-quarters filling in twisted bilayer graphene

arXiv:1901.03520 · doi:10.1126/science.aaw3780

Abstract

When two sheets of graphene are stacked at a small twist angle, the resulting flat superlattice minibands are expected to strongly enhance electron-electron interactions. Here we present evidence that near three-quarters () filling of the conduction miniband these enhanced interactions drive the twisted bilayer graphene into a ferromagnetic state. We observe emergent ferromagnetic hysteresis, with a giant anomalous Hall (AH) effect as large as and signs of chiral edge states in a narrow density range around an apparent insulating state at . Surprisingly, the magnetization of the sample can be reversed by applying a small DC current. Although the AH resistance is not quantized and dissipation is significant, we suggest that the system is an incipient Chern insulator.

18 pages, 4 figures