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Strong interactions and isospin symmetry breaking in a supermoir\'e lattice

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arxiv 2404.01372 v1 pith:77BOY54Q submitted 2024-04-01 cond-mat.mes-hall cond-mat.str-el

classification cond-mat.mes-hallcond-mat.str-el
keywords supermoirisospinphasesymmetrybreakinginteractionslatticelattices
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abstract

In multilayer moir\'e heterostructures, the interference of multiple twist angles ubiquitously leads to tunable ultra-long-wavelength patterns known as supermoir\'e lattices. However, their impact on the system's many-body electronic phase diagram remains largely unexplored. We present local compressibility measurements revealing numerous incompressible states resulting from supermoir\'e-lattice-scale isospin symmetry breaking driven by strong interactions. By using the supermoir\'e lattice occupancy as a probe of isospin symmetry, we observe an unexpected doubling of the miniband filling near $\nu=-2$, possibly indicating a hidden phase transition or normal-state pairing proximal to the superconducting phase. Our work establishes supermoir\'e lattices as a tunable parameter for designing novel quantum phases and an effective tool for unraveling correlated phenomena in moir\'e materials.

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  1. hBN alignment orientation controls moir\'e strength in rhombohedral graphene

    cond-mat.mes-hall 2025-07 conditional novelty 6.0 of 10

    The 180-degree alignment orientation of hBN relative to rhombohedral graphene determines whether the moiré potential is strong or weak, reshaping the correlated phase diagram.

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