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Tunable Inter-Moir\'e Physics in Consecutively-Twisted Trilayer Graphene

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arxiv 2311.10313 v1 pith:ETAKU3NZ submitted 2023-11-17 cond-mat.mes-hall

classification cond-mat.mes-hall
keywords moirgrapheneinter-moirphysicssuperlatticestrilayeranglesatomic
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We fabricate a twisted trilayer graphene device with consecutive twist angles of 1.33 and 1.64 degrees, in which we electrostatically tune the electronic states from each of the two co-existing moir\'e superlattices and the interactions between them. When both moir\'e superlattices contribute equally to electrical transport, we report a new type of inter-moir\'e Hofstadter butterfly. Its Brown-Zak oscillation corresponds to one of the intermediate quasicrystal length scales of the reconstructed moir\'e of moir\'e (MoM) superlattice, shedding new light on emergent physics from competing atomic orders.

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  1. Fractional Chern mosaic in supermoir\'e graphene

    cond-mat.str-el 2024-11 conditional novelty 7.0 of 10

    Helical trilayer graphene with momentum-dependent tunneling is predicted to host a fractional Chern mosaic at filling 3+1/3: local fractional Chern insulators whose fractionalization pattern varies on the supermoiré scale.

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