Chiral Symmetry Breaking in Graphene
arXiv:1108.2945 · doi:10.1088/0031-8949/2012/T146/014016
Abstract
The question of whether the Coulomb interaction is strong enough to break the sublattice symmetry of un-doped graphene is discussed. We formulate a strong coupling expansion where the ground state of the Coulomb Hamiltonian is found exactly and the kinetic hopping Hamiltonian is treated as a perturbation. We argue that many of the properties of the resulting system would be shared by graphene with a Hubbard model interaction. In particular, the best candidate sublattice symmetry breaking ground state is an antiferromagnetic Mott insulator. We discuss the results of some numerical simulations which indicate that the Coulomb interaction is indeed subcritical. We also point out the curious fact that, if the electron did not have spin degeneracy, the tendency to break chiral symmetry would be much greater and even relatively weak Coulomb interactions would likely gap the spectrum.
18 pages, 6 figures, to appear in Proceedings of the Nobel Symposium on Graphene and Quantum Matter
References in corpus (17)
- Electric Field Effect in Atomically Thin Carbon Films
- Quantum Spin Hall Effect and Topological Phase Transition in HgTe Quantum Wells
- Topological Insulators with Inversion Symmetry
- Unconventional Integer Quantum Hall effect in graphene
- Phase transition between the quantum spin Hall and insulator phases in 3D: emergence of a topological gapless phase
- Quantum spin-liquid emerging in two-dimensional correlated Dirac fermions
- Interactions and phase transitions on graphene's honeycomb lattice
- Coulomb interaction, ripples, and the minimal conductivity of graphene
- Chiral Gauge Theory for Graphene
- Quantum Critical Behaviour in a Graphene-like Model
- Interacting Dirac Fermions on Honeycomb Lattice
- Renormalization group approach to 2D Coulomb interacting Dirac fermions with random gauge potential
- Conductivity of interacting massless Dirac particles in graphene: Collisionless regime
- Electron-Electron Interactions in the Vacuum Polarization of Graphene
- Renormalization group flow of quartic perturbations in graphene: Strong coupling and large-N limits
- Emergent Spin Liquids in the Hubbard Model on the Anisotropic Honeycomb Lattice
- Quantum Phase Transition in a Graphene Model
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- Fractional Quantum Hall Effect in Graphene: Quantitative Comparison between Theory and Experiment
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- Phase transitions in hexagonal, graphene-like lattice sheets and nanotubes under the influence of external conditions
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- Stability of Topological character of Weyl Semi-metal, and Topological Dipole in Holography
- Phase structure of monolayer graphene from effective U(1) gauge theory on honeycomb lattice
- Spin Versus Charge Density Wave Order in Graphene-like Systems
- Vacuum alignment and phase structure of holographic bi-layers
- Twisted bilayer graphene at charge neutrality: competing orders of SU(4) Dirac fermions
- Angle-Tuned Gross-Neveu Quantum Criticality in Twisted Bilayer Graphene: A Quantum Monte Carlo Study
- Screening and gap generation in bilayer graphene
- Fermi-liquid ground state of interacting Dirac fermions in two dimensions
- D3-D7 Holographic dual of a perturbed 3D CFT
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- Boundary Ferromagnetism in Zigzag Edged Graphene
- Localization of Electronic States in Hybrid Nano-Ribbons in the Non-Perturbative Regime
- Ballistic magnetotransport in graphene
- Interaction effects in graphene in a weak magnetic field
- Superconductivity of Incoherent Electrons near the Relativistic Mott Transition in Twisted Dirac Materials
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- Strong-coupling superconductivity near Gross-Neveu quantum criticality in Dirac systems
- Quantum phase transitions on the hexagonal lattice
- Unruh effect detection through chirality in curved graphene
- Holographic model of exciton condensation in double monolayer Dirac semimetal
- Classification of mass terms in kagome semimetals
- Position space formulation for Dirac fermions on honeycomb lattice