A GW+RPA perturbation framework built on Hartree-Fock is applied to hBN-aligned rhombohedral pentalayer graphene and magic-angle twisted bilayer graphene, producing phase diagrams and spectra that match experiments and predicting a nematic metal ground state at charge neutrality in MATBG.
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YCl requires a multi-orbital description for its dice lattice flat band, predicting ferromagnetic ground state and tunable correlated QAH phases absent in single-orbital models.
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General Many-Body Perturbation Framework for Moir\'e Systems
A GW+RPA perturbation framework built on Hartree-Fock is applied to hBN-aligned rhombohedral pentalayer graphene and magic-angle twisted bilayer graphene, producing phase diagrams and spectra that match experiments and predicting a nematic metal ground state at charge neutrality in MATBG.
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YCl Electride as a Multi-Orbital Correlated Topological Dice Lattice System
YCl requires a multi-orbital description for its dice lattice flat band, predicting ferromagnetic ground state and tunable correlated QAH phases absent in single-orbital models.