Interlayer attraction in bilayer graphene-Mott insulator heterostructures stabilizes topological electron crystals with triangular, honeycomb, and kagome geometries via self-consistent Hartree-Fock calculations.
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Variational Monte Carlo shows magnetic fields melt Wigner crystals into integer quantum Hall liquids via downward cusps in liquid ground-state energy at integer fillings, establishing a density range for the transition.
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Emergence of Topological Electron Crystals in Bilayer Graphene--Mott Insulator Heterostructures
Interlayer attraction in bilayer graphene-Mott insulator heterostructures stabilizes topological electron crystals with triangular, honeycomb, and kagome geometries via self-consistent Hartree-Fock calculations.
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Quantum melting a Wigner crystal into Hall liquids
Variational Monte Carlo shows magnetic fields melt Wigner crystals into integer quantum Hall liquids via downward cusps in liquid ground-state energy at integer fillings, establishing a density range for the transition.