Origin of Mott insulating behavior and superconductivity in twisted bilayer graphene
arXiv:1803.09742 · doi:10.1103/PhysRevX.8.031089
Abstract
A remarkable recent experiment has observed Mott insulator and proximate superconductor phases in twisted bilayer graphene when electrons partly fill a nearly flat mini-band that arises a `magic' twist angle. However, the nature of the Mott insulator, origin of superconductivity and an effective low energy model remain to be determined. We propose a Mott insulator with intervalley coherence that spontaneously breaks U(1) valley symmetry, and describe a mechanism that selects this order over the competing magnetically ordered states favored by the Hunds coupling. We also identify symmetry related features of the nearly flat band that are key to understanding the strong correlation physics and constrain any tight binding description. First, although the charge density is concentrated on the triangular lattice sites of the moir pattern, the Wannier states of the tight-binding model must be centered on different sites which form a honeycomb lattice. Next, spatially localizing electrons derived from the nearly flat band necessarily breaks valley and other symmetries within any mean-field treatment, which is suggestive of a valley-ordered Mott state, and also dictates that additional symmetry breaking is present to remove symmetry-enforced band contacts. Tight-binding models describing the nearly flat mini-band are derived, which highlight the importance of further neighbor hopping and interactions. We discuss consequences of this picture for superconducting states obtained on doping the valley ordered Mott insulator. We show how important features of the experimental phenomenology may be explained and suggest a number of further experiments for the future. We also describe a model for correlated states in trilayer graphene heterostructures and contrast it with the bilayer case.
Main text (17 pages, 4 figures, 1 table) + Appendices; v2: Schematic (Fig. 1) updated; typos fixed and notational consistency improved
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- Determinant quantum Monte Carlo for the half-filled Hubbard model with nonlocal density-density interactions
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- Atomistic theory of moiré Hofstadter's butterfly in magic-angle graphene
- Twisted bilayer graphene reveals its flat bands under spin pumping
- Gapping fragile topological bands by interactions
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- Charge order and Mott insulating ground states in small-angle twisted bilayer graphene
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- Exceptional magic angles in non-Hermitian twisted bilayer graphene
- Interplay of Landau quantization and interminivalley scatterings in a weakly coupled moiré superlattice
- Competing magnetic states on the surface of multilayer ABC-stacked graphene
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- Geometric and conventional contributions of superconducting diode effect: Application to flat-band systems
- Hund's coupling-assisted ferromagnetic percolation transition in a multiorbital flat band
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- Quantum valley Hall states in low-buckled counterparts of graphene bilayer
- Spontaneous layer selective Mott phase in the bilayer Hubbard model
- Nodal Nematic Superconductivity in Multiple-Flat-Band Land
- Band manipulation and spin texture in interacting moiré helical edges
- Emergent flat band lattices in spatially periodic magnetic fields
- Gross-Neveu-XY quantum criticality in moiré Dirac materials
- Re-entrant Superconductivity Through a Quantum Lifshitz Transition in Twisted Trilayer Graphene
- Origin of magic angles in twisted bilayer graphene: The magic ring
- Probing the wavefunctions of correlated states in magic angle graphene
- Construction of low-energy symmetric Hamiltonians and Hubbard parameters for twisted multilayer systems using ab-initio input
- Analog of cosmological particle production in Dirac materials
- Topological multiferroic phases in the extended Kane-Mele-Hubbard Model in the Hofstadter regime
- Spin-valley magnetism on the triangular moiré lattice with SU(4) breaking interactions
- Stacking sensitive topological phases in a bilayer Kane-Mele-Hubbard model at quarter filling
- Brownian dynamics of Dirac fermions in twisted bilayer graphene
- Probing three-state Potts nematic fluctuations by ultrasound attenuation
- Spontaneous symmetry breaking in a honeycomb lattice subject to a periodic potential
- Moiré fractals in twisted graphene layers
- Bilayer twisting as a mean to isolate connected flat bands in a Kagome lattice through Wigner crystallization
- Punctured-Chern topological invariants for semi-metallic bandstructures
- Flat Bands Arising from Spin-Orbit Assisted Orbital Frustration
- Ab-initio study of the energy competition between Γand K valleys in bilayer transition metal dichalcogenides
- Polarization textures in crystal supercells with topological bands
- Renormalized Magic Angles in Asymmetric Twisted Graphene Multilayers
- Coulomb-driven band unflattening suppresses -phonon pairing in moiré graphene
- Electronic properties of graphyne- monolayer and its multilayer: even-odd effect and topological nodal line semimetalic phases
- Superconductivity of Incoherent Electrons near the Relativistic Mott Transition in Twisted Dirac Materials
- Emergent topology of flat bands in a twisted bilayer - lattice
- Network of chiral one-dimensional channels and localized states emerging in a moiré system
- Photonic emulation of two-dimensional materials with antiferromagnetic order
- Finite temperatures and flat bands: the Hubbard model on three-dimensional Lieb lattices
- Band theory for heterostructures with interface superlattices
- Tunable bandgaps and flat bands in twisted bilayer biphenylene carbon
- Tuning monolayer superconductivity in twisted NbSe graphene heterostructures
- Critical Filaments and Superconductivity in Quasiperiodic Twisted Bilayer Graphene
- Band structure and optical response of Kekulé-modulated model
- Quantum simulation of honeycomb lattice model by high-order moiré pattern
- Tight binding approximation for bilayer graphene and nanotube structures: from commensurability to incommensurability between the layers
- Twisted bilayer graphene from first-principles: structural and electronic properties
- Solvable lattice models for metals with Z2 topological order
- Giant Shear Displacement by Light-Induced Raman Force in Bilayer Graphene
- Pseudospin density wave instability in two-dimensional electron bilayers
- Incommensurability-induced sub-ballistic narrow-band-states in twisted bilayer graphene
- Effective tight-binding models in optical moiré potentials
- Van der Waals Heterostructure PtHgSe/CrI for Topological Valleytronics
- Analogue of atomic collapse for adatoms on rhombohedral multilayer graphene
- Mechanism of skyrmion condensation and pairing for twisted bi-layer graphene
- Generalized Peierls substitution for Wannier obstructions: response to disorder and interactions
- Real-Space Switching of Local Moments Driven by Quantum Geometry in Correlated Graphene Heterostructures
- Nematicity Arising from a Chiral Superconducting Ground State in Magic-Angle Twisted Bilayer Graphene under In-Plane Magnetic Fields
- Wavefunction textures in twisted bilayer graphene from first principles
- Mean-field Modelling of Moiré Materials: A User's Guide with Selected Applications to Twisted Bilayer Graphene
- Interference effects in polarization controlled Rayleigh scattering in twisted bilayer graphene
- Collective excitations of the Chern-insulator states in commensurate double moiré superlattices of twisted bilayer graphene on hexagonal boron nitride
- Photon absorption in twisted bilayer graphene
- Geometry-Driven Moiré Engineering in Twisted Bilayers of High-Pseudospin Fermions
- Topological invariant and domain connectivity in moiré materials
- Gutzwiller approximation approach to the SU(4) - model
- Robust -Linear Resistivity due to SU(4) Valley + Spin Fluctuation Mechanism in Magic Angle Twisted Bilayer Graphene
- Anomalous enhancement of large-momentum scattering by electron-electron interaction in moiré superlattices
- Superfluid Stiffness and Josephson Quantum Capacitance: Adiabatic Approach and Topological Effects
- Mott transition and correlation effects on strictly localized states in an octagonal quasicrystal
- Merged Four Dirac Points at the Critical Interlayer Distance in Commensurately Twisted Bilayer Graphene: the Origin of the Zero Velocity
- How quantum fluctuations freeze a classical liquid and then melt it into a topological one
- Quantum Monte Carlo study of magnetism and chiral d+id-wave superconductivity in twisted bilayer graphene
- Van-Hove tuning of Fermi surface instabilities through compensated metallicity
- Magnetism of magic-angle twisted bilayer graphene
- Network model and four-terminal transport in minimally twisted bilayer graphene
- Particle-hole asymmetric phases in doped twisted bilayer graphene
- Effects of spin-orbit coupling in a valley chiral kagomé network
- Dissipation-Driven Transition of Particles from Dispersive to Flat Bands
- Direct visualization of gate-tunable flat bands in twisted double bilayer graphene
- Incommensurate Twisted Bilayer Graphene: emerging quasi-periodicity and stability
- Buckling and flat bands in twisted bilayer graphene
- Renormalization group analysis of weakly interacting van der Waals Fermi system
- Chiral topological superconductivity in twisted bilayer and double bilayer graphene
- Surface acoustic wave-driven valley current generation in intervalley coherent states
- Decomposing Electronic Structures in Twisted Multilayers: Bridging Spectra and Incommensurate Wave Functions
- Atomic frustration-based twistronics
- Optical vortex probe of loop-current chirality in moiré materials
- Quasi-two-dimensional spin helix and magnon-induced singularity in twisted bilayer graphene
- Flat bands and band touching from real-space topology in hyperbolic lattices
- Unconventional superconductivity mediated by exciton density wave fluctuations