Magnetic field stabilized Wigner crystal states in a graphene moiré superlattice
arXiv:2305.08387 · doi:10.1021/acs.nanolett.3c01741
Abstract
Wigner crystals are predicted as the crystallization of the dilute electron gas moving in a uniform background when the electron-electron Coulomb energy dominates the kinetic energy. The Wigner crystal has previously been observed in the ultraclean two-dimensional electron gas (2DEG) present on the surface of liquid helium and in semiconductor quantum wells at high magnetic field. More recently, Wigner crystals have also been reported in WS2/WSe2 moiré heterostructures. ABC-stacked trilayer graphene on boron nitride (ABC-TLG/hBN) moiré superlattices provide a unique tunable platform to explore Wigner crystal states where the electron correlation can be controlled by electric and magnetic field. Here we report the observation of magnetic field stabilized Wigner crystal states in a ABC-TLG/hBN moiré superlattice. We show that correlated insulating states emerge at multiple fractional and integer fillings corresponding to v = 1/3, 2/3, 1, 4/3, 5/3 and 2 electrons per moiré lattice site under a magnetic field. These correlated insulating states can be attributed to generalized Mott states for the integer fillings (v = 1, 2) and generalized Wigner crystal states for the fractional fillings (v = 1/3, 2/3, 4/3, 5/3). The generalized Wigner crystal states are stabilized by a vertical magnetic field, and they are strongest at one magnetic flux quantum per three moiré superlattices. The correlated insulating states at v = 2 persists up to 30 Tesla, which can be described by a Mott-Hofstadter transition at high magnetic field. The tunable Mott and Wigner crystal states in the ABC-TLG/hBN highlight the opportunities to discover new correlated quantum phases due to the interplay between the magnetic field and moiré flatbands.
19 pages, 6 figures
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- Correlated Insulating States at Fractional Fillings of the WS2/WSe2 Moiré Lattice
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Cited by in corpus (7)
- Quantum Geometry and Stabilization of Fractional Chern Insulators Far from the Ideal Limit
- Collective Dynamics and Defect Generation for Wigner Crystal Ratchets
- Quantum melting of generalized electron crystal in twisted bilayer MoSe2
- Full, three-quarter, half and quarter Wigner crystals in Bernal bilayer graphene
- Magnetic Field Effects and Transverse Ratchets in Charge Lattices Coupled to Asymmetric Substrates
- Quantum melting a Wigner crystal into Hall liquids
- Applied electric and magnetic field effects on the bandgap formation and antiferromagnetic ordering in AA-stacked Bilayer Graphene