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Magic-angle helical trilayer graphene

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arxiv 2305.03031 v1 pith:ULC4PYKA submitted 2023-05-04 cond-mat.str-el cond-mat.mes-hall

Magic-angle helical trilayer graphene

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

We propose helical trilayer graphene (HTG), a helical structure featuring identical rotation angles $\theta\approx 1.5^\circ$ between three consecutive layers of graphene, as a unique and experimentally accessible platform for realizing exotic correlated topological states of matter. While nominally forming a supermoir\'e (or moir\'e-of-moir\'e) structure, we show that HTG locally relaxes into large regions of a periodic single-moir\'e structure in which $C_{2z}$ is broken, giving rise to flat topological bands carrying valley-Chern numbers $C=\pm(1,-2)$. These bands feature near-ideal quantum geometry and are isolated from remote bands by a large gap $E_{\mathrm{gap}}\sim 100$ meV, making HTG a promising platform for experimental realization of correlated topological states such as integer and fractional quantum anomalous Hall states in $C=1$ and $2$ bands.

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