Kekulé spiral order at all nonzero integer fillings in twisted bilayer graphene
arXiv:2105.05857 · doi:10.1103/PhysRevX.11.041063
Abstract
We study magic angle graphene in the presence of both strain and particle-hole symmetry breaking due to non-local inter-layer tunneling. We perform a self-consistent Hartree-Fock study that incorporates these effects alongside realistic interaction and substrate potentials, and explore a comprehensive set of competing orders including those that break translational symmetry at arbitrary wavevectors. We find that at all non-zero integer fillings very small strains, comparable to those measured in scanning tunneling experiments, stabilize a fundamentally new type of time-reversal symmetric and spatially non-uniform order. This order, which we dub the 'incommensurate Kekulé spiral' (IKS) order, spontaneously breaks both the emergent valley-charge conservation and moiré translation symmetries, but preserves a modified translation symmetry -- which simultaneously shifts the spatial coordinates and rotates the angle which characterizes the spontaneous inter-valley coherence. We discuss the phenomenological and microscopic properties of this order. We argue that our findings are consistent with all experimental observations reported so far, suggesting a unified explanation of the global phase diagram in terms of the IKS order.
18pp + 6pp references, 8 figures (main text); 16pp, 22 figures (supplement); v3: published version
References in corpus (14)
- Theory of Intertwined Orders in High Temperature Superconductors
- Continuum Model of the Twisted Bilayer
- Lattice relaxation and energy band modulation in twisted bilayer graphenes
- Origin of band gaps in graphene on hexagonal boron nitride
- Band structure and insulating states driven by the Coulomb interaction in twisted bilayer graphene
- Topological charge density waves at half-integer filling of a moiré superlattice
- Moiré Commensurability and the Quantum Anomalous Hall Effect in Twisted Bilayer Graphene on Hexagonal Boron Nitride
- Exact Diagonalization for Magic-Angle Twisted Bilayer Graphene
- Emergent supersymmetry at the Ising-Berezinskii-Kosterlitz-Thouless multicritical point
- Quasiperiodicity, band topology, and moiré graphene
- Excitonic Laughlin States in Ideal Topological Insulator Flat Bands and Possible Presence in Moiré Superlattice Materials
- Soft modes in magic angle twisted bilayer graphene
- Lattice Deformation, Low Energy Models and Flat Bands in Twisted Graphene Bilayers
- Re-entrant Superconductivity Through a Quantum Lifshitz Transition in Twisted Trilayer Graphene
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