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Angular Interplay of Nematicity, Superconductivity, and Strange Metallicity in a Moir\'e Flat Band

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arxiv 2503.15767 v1 pith:4LJSMHJ4 submitted 2025-03-20 cond-mat.mes-hall cond-mat.str-elcond-mat.supr-con

classification cond-mat.mes-hallcond-mat.str-elcond-mat.supr-con
keywords superconductivitysymmetryangularinterplaymetallicitynematicityorderparameter
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Superconductivity in strongly correlated electron systems frequently exhibits broken rotational symmetry, raising fundamental questions about the underlying order parameter symmetry. In this work, we demonstrate that electronic nematicity--driven by Coulomb-mediated rotational symmetry breaking--serves as a crucial link to understanding the nature of superconductivity. Utilizing a novel framework of angle-resolved measurement, we reveal an interring angular interplay among nematicity, superconductivity, and strange metallicity in magic-angle twisted trilayer graphene. By establishing a direct correlation between the preferred superconducting transport direction and the principal axis of the metallic phase, our findings place strong constrains on the symmetry of the superconducting order parameter. This work introduces a new paradigm for probing the microscopic mechanisms governing superconductivity in strongly interacting two-dimensional systems.

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Cited by 1 Pith paper

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. A Hierarchy of Superconductivity and Topological Charge Density Wave States in Rhombohedral Graphene

    cond-mat.mes-hall 2025-07 conditional novelty 7.0 of 10

    In rhombohedral hexalayer graphene, superconductivity is stabilized by an out-of-plane magnetic field and coexists with re-entrant integer quantum Hall states attributed to a bubble-like charge density wave.

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