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Chiral Magic-Angle Twisted Bilayer Graphene in a Magnetic Field: Landau Level Correspondence, Exact Wavefunctions and Fractional Chern Insulators

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arxiv 2106.10650 v2 pith:YYRJ6LZZ submitted 2021-06-20 cond-mat.str-el cond-mat.mes-hall

classification cond-mat.str-elcond-mat.mes-hall
keywords fieldmagneticflatmodelbilayercellchernchiral
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We show that the flat bands in the chiral model of magic-angle twisted bilayer graphene remain exactly flat in the presence of a perpendicular magnetic field. This is shown by an exact mapping between the model and the lowest Landau level wavefunctions at an effective magnetic field, in which the external field is either augmented or reduced by one flux quantum per unit cell. When the external field reaches one flux quantum per unit cell, the model exhibits a topological phase transition. These findings allow us to analyze a Jain-series of Fractional Chern Insulators states in the exactly flat band, and to point out an unconventional dependence of the energy gap on the magnetic field.

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  1. Designing Flat Bands and Pseudo-Landau Levels in GaAs with Patterned Gates

    cond-mat.mes-hall 2024-12 conditional novelty 6.0 of 10

    A periodic gate voltage on a GaAs 2DEG can flatten electron bands into pseudo-Landau levels, with an asymmetric pattern producing nonzero Berry curvature.

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