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Quantum anomalous Hall effect from inverted charge transfer gap

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arxiv 2109.13909 v2 pith:D6YSXYNI submitted 2021-09-28 cond-mat.str-el cond-mat.mes-hall

Quantum anomalous Hall effect from inverted charge transfer gap

classification cond-mat.str-el cond-mat.mes-hall
keywords chargetransferbandinsulatorinversionquantumanomalousbands
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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abstract

A general mechanism is presented by which topological physics arises in strongly correlated systems without flat bands. Starting from a charge transfer insulator, topology emerges when the charge transfer energy between the cation and anion is reduced to invert the lower Hubbard band and the spin-degenerate charge transfer band. A universal low-energy theory is developed for the inversion of charge transfer gap in a quantum antiferromagnet. The inverted state is found to be a quantum anomalous Hall (QAH) insulator with non-coplanar magnetism. Interactions play two essential roles in this mechanism: producing the insulating gap and quasiparticle bands prior to the band inversion, and causing the change of magnetic order necessary for the QAH effect after inversion. Our theory explains the electric field induced transition from correlated insulator to QAH state in AB-stacked TMD bilayer MoTe$_2$/WSe$_2$.

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