Twisted Bilayer Graphene V: Exact Analytic Many-Body Excitations in Twisted Bilayer Graphene Coulomb Hamiltonians: Charge Gap, Goldstone Modes and Absence of Cooper Pairing
arXiv:2009.14200 · doi:10.1103/PhysRevB.103.205415
Abstract
We find exact analytic expressions for the energies and wavefunctions of the charged and neutral excitations above the exact ground states (at rational filling per unit cell) of projected Coulomb Hamiltonians in twisted bilayer graphene. Our exact expressions are valid for any form of the Coulomb interaction and any form of and tunneling. The single charge excitation energy is a convolution of the Coulomb potential with a quantum geometric tensor of the TBG bands. The neutral excitations are (high-symmetry group) magnons, and their dispersion is analytically calculated in terms of the form factors of the active bands in TBG. The two-charge excitation energy and wavefunctions are also obtained, and a sufficient condition on the graphene eigenstates for obtaining a Cooper-pair from Coulomb interactions is obtained. For the actual TBG bands at the first magic angle, we can analytically show that the Cooper pair binding energy is zero in all such projected Coulomb models, implying that either phonons and/or non-zero kinetic energy are needed for superconductivity. Since the [Phys. Rev. Lett. 122, 246401] showed that the kinetic energy bounds on the superexchange energy are less in Coulomb units, the phonon mechanism becomes then very likely. If nonetheless the superconductivity is due to kinetic terms which render the bands non-flat, one prediction of our theory is that the highest would not occur at the highest DOS.
References added; Excitations at odd fillings in the flat nonchiral limit added
References in corpus (40)
- Untying the insulating and superconducting orders in magic-angle graphene
- Cascade of electronic transitions in magic-angle twisted bilayer graphene
- Strongly Correlated Chern Insulators in Magic-Angle Twisted Bilayer Graphene
- Cascade of Phase Transitions and Dirac Revivals in Magic Angle Graphene
- Decoupling superconductivity and correlated insulators in twisted bilayer graphene
- Chern Insulators and Topological Flat-bands in Magic-angle Twisted Bilayer Graphene
- Superconductivity without insulating states in twisted bilayer graphene stabilized by monolayer WSe
- Ground State and Hidden Symmetry of Magic Angle Graphene at Even Integer Filling
- Fractional Chern Insulator States in Twisted Bilayer Graphene: An Analytical Approach
- Tuning electron correlation in magic-angle twisted bilayer graphene using Coulomb screening
- Flavour Hund's Coupling, Correlated Chern Gaps, and Diffusivity in Moiré Flat Bands
- Twisted Bilayer Graphene IV. Exact Insulator Ground States and Phase Diagram
- Hofstadter subband ferromagnetism and symmetry broken Chern insulators in twisted bilayer graphene
- Entropic evidence for a Pomeranchuk effect in magic angle graphene
- Symmetry broken Chern insulators and magic series of Rashba-like Landau level crossings in magic angle bilayer graphene
- Twisted bilayer graphene III. Interacting Hamiltonian and exact symmetries
- Ferromagnetism in narrow bands of moiré superlattices
- Particle-Hole Duality, Emergent Fermi Liquids and Fractional Chern Insulators in Moiré Flatbands
- Theories for the correlated insulating states and quantum anomalous Hall phenomena in twisted bilayer graphene
- Correlated insulating phases of twisted bilayer graphene at commensurate filling fractions: a Hartree-Fock study
- Twisted bilayer graphene. II. Stable symmetry anomaly
- Collective Excitations of Quantum Anomalous Hall Ferromagnets in Twisted Bilayer Graphene
- Band structure and insulating states driven by the Coulomb interaction in twisted bilayer graphene
- Non-Abelian Dirac node braiding and near-degeneracy of correlated phases at odd integer filling in magic angle twisted bilayer graphene
- Towards the hidden symmetry in Coulomb interacting twisted bilayer graphene: renormalization group approach
- Efficient simulation of moire materials using the density matrix renormalization group
- Twisted bilayer graphene.VI. An Exact Diagonalization Study of Twisted Bilayer Graphene at Non-Zero Integer Fillings
- Twisted bilayer graphene I. Matrix elements, approximations, perturbation theory and a 2-Band model
- Correlation-induced insulating topological phases at charge neutrality in twisted bilayer graphene
- Superconductivity, correlated insulators, and Wess-Zumino-Witten terms in twisted bilayer graphene
- Nematicity with a twist: rotational symmetry breaking in a moiré superlattice
- Disorder in Twisted Bilayer Graphene
- Competing phases of interacting electrons on triangular lattices in moiré heterostructures
- Landau levels in twisted bilayer graphene and semiclassical orbits
- Hybrid Wannier Chern bands in magic angle twisted bilayer graphene and the quantized anomalous Hall effect
- Spin magnetometry as a probe of stripe superconductivity in twisted bilayer graphene
- Transport across twist angle domains in moiré graphene
- Isospin Pomeranchuk effect and the entropy of collective excitations in twisted bilayer graphene
- DMRG study of strongly interacting flatbands: a toy model inspired by twisted bilayer graphene
- Quasi-flat-band physics in a two-leg ladder model and its relation to magic-angle twisted bilayer graphene
Cited by in corpus (110)
- Colloquium: Quantum anomalous Hall effect
- Superfluidity and Quantum Geometry in Twisted Multilayer Systems
- MATBG as Topological Heavy Fermion: I. Exact Mapping and Correlated Insulators
- Twisted Bilayer Graphene IV. Exact Insulator Ground States and Phase Diagram
- Exact Landau Level Description of Geometry and Interaction in a Flatband
- Twisted bilayer graphene III. Interacting Hamiltonian and exact symmetries
- Twisted bilayer graphene. II. Stable symmetry anomaly
- Twisted bilayer graphene.VI. An Exact Diagonalization Study of Twisted Bilayer Graphene at Non-Zero Integer Fillings
- Twisted bilayer graphene I. Matrix elements, approximations, perturbation theory and a 2-Band model
- Chiral Approximation to Twisted Bilayer Graphene: Exact Intra-Valley Inversion Symmetry, Nodal Structure and Implications for Higher Magic Angles
- Hierarchy of Ideal Flatbands in Chiral Twisted Multilayer Graphene Models
- Global Phase Diagram of the Normal State of Twisted Bilayer Graphene
- Cascades between light and heavy fermions in the normal state of magic angle twisted bilayer graphene
- Kondo lattice model in magic-angle twisted bilayer graphene
- Quantum Metric and Correlated States in Two-dimensional Systems
- Realization of Topological Mott Insulator in a Twisted Bilayer Graphene Lattice Model
- Correlated insulators, semimetals, and superconductivity in twisted trilayer graphene
- Exact Diagonalization for Magic-Angle Twisted Bilayer Graphene
- Kondo Lattice Model of Magic-Angle Twisted-Bilayer Graphene: Hund's Rule, Local-Moment Fluctuations, and Low-Energy Effective Theory
- Momentum space quantum Monte Carlo on twisted bilayer Graphene
- Theory of correlated insulators and superconductivity in twisted bilayer graphene
- Ideal Chern bands are Landau levels in curved space
- Pseudo-magnetic fields, particle-hole asymmetry, and microscopic effective continuum Hamitonians of twisted bilayer graphene
- Higher-order van Hove singularity in magic-angle twisted trilayer graphene
- Reentrant Correlated Insulators in Twisted Bilayer Graphene at 25T ( Flux)
- Spectroscopy of Twisted Bilayer Graphene Correlated Insulators
- Phonons in magic-angle twisted bilayer graphene
- Symmetric Kondo Lattice States in Doped Strained Twisted Bilayer Graphene
- Dynamical correlations and order in magic-angle twisted bilayer graphene
- Continuum effective Hamiltonian for graphene bilayers for an arbitrary smooth lattice deformation from microscopic theories
- Magic-Angle Twisted Symmetric Trilayer Graphene as Topological Heavy Fermion Problem
- Exciton Proliferation and Fate of the Topological Mott Insulator in a Twisted Bilayer Graphene Lattice Model
- Kondo Phase in Twisted Bilayer Graphene -- A Unified Theory for Distinct Experiments
- Unconventional superconductivity due to interband polarization
- Dynamical properties of collective excitations in twisted bilayer Graphene
- Isospin Pomeranchuk effect and the entropy of collective excitations in twisted bilayer graphene
- Moiré Fractional Chern Insulators III: Hartree-Fock Phase Diagram, Magic Angle Regime for Chern Insulator States, the Role of the Moiré Potential and Goldstone Gaps in Rhombohedral Graphene Superlattices
- Phase diagram of twisted bilayer graphene at filling factor
- Does filling-dependent band renormalization aid pairing in twisted bilayer graphene?
- Lattice model for the Coulomb interacting chiral limit of the magic angle twisted bilayer graphene: symmetries, obstructions and excitations
- TBG as Topological Heavy Fermion: II. Analytical approximations of the model parameters
- Electron spin resonance and collective excitations in magic-angle twisted bilayer graphene
- Superconductivity and bosonic fluid emerging from Moiré flat bands
- TSTG II: Projected Hartree-Fock Study of Twisted Symmetric Trilayer Graphene
- Unusual magnetotransport in twisted bilayer graphene from strain-induced open Fermi surfaces
- Local Kekulé distortion turns twisted bilayer graphene into topological Mott insulators and superconductors
- Molecular Pairing in Twisted Bilayer Graphene Superconductivity
- Thermodynamic characteristic for correlated flat-band system with quantum anomalous Hall ground state
- Magnetic Bloch Theorem and Reentrant Flat Bands in Twisted Bilayer Graphene at Flux
- Magic angles in twisted bilayer graphene near commensuration: Towards a hypermagic regime
- Quantum Monte Carlo sign bounds, topological Mott insulator and thermodynamic transitions in twisted bilayer graphene model
- Lattice Collective Modes from a Continuum Model of Magic-Angle Twisted Bilayer Graphene
- From electrons to baby skyrmions in Chern ferromagnets: A topological mechanism for spin-polaron formation in twisted bilayer graphene
- Theory of topological exciton insulators and condensates in flat Chern bands
- Interacting models for twisted bilayer graphene: a quantum chemistry approach
- Symmetry constraints on superconductivity in twisted bilayer graphene: Fractional vortices, condensates or non-unitary pairing
- Electron-phonon coupling and competing Kekulé orders in twisted bilayer graphene
- "Quantum Geometric Nesting" and Solvable Model Flat-Band Systems
- Narrow bands in magnetic field and strong-coupling Hofstadter spectra
- Interacting Topological Quantum Chemistry in 2D: Many-body Real Space Invariants
- Kekulé spiral order at all nonzero integer fillings in twisted bilayer graphene
- Chiral model of twisted bilayer graphene realized in a monolayer
- Trions in Twisted Bilayer Graphene
- Thermodynamics of free and bound magnons in graphene
- Magic-angle Twisted Bilayer Systems with Quadratic-Band-Touching: Exactly Flat Bands with High-Chern Number
- Upper bounds on superconducting and excitonic phase-stiffness for interacting isolated narrow bands
- Twisted-bilayer FeSe and the Fe-based superlattices
- Interlayer hybridization in graphene quasicrystal and other bilayer graphene systems
- Theory of correlated Chern insulators in twisted bilayer graphene
- A primer on twistronics: A massless Dirac fermion's journey to moiré patterns and flat bands in twisted bilayer graphene
- Towards holographic flat bands
- High-Harmonic Generation with a twist: all-optical characterization of magic-angle twisted bilayer graphene
- Low-energy optical sum-rule in moiré graphene
- Topological flat bands, valley polarization, and interband superconductivity in magic-angle twisted bilayer graphene with proximitized spin-orbit couplings
- Intrinsically-multilayer moiré heterostructures
- Angle-Tuned Gross-Neveu Quantum Criticality in Twisted Bilayer Graphene: A Quantum Monte Carlo Study
- Scaling theory of intrinsic Kondo and Hund's rule interactions in magic-angle twisted bilayer graphene
- Nonlocal Moments in the Chern Bands of Twisted Bilayer Graphene
- Replica Higher-Order Topology of Hofstadter Butterflies in Twisted Bilayer Graphene
- Topological heavy fermions in magnetic field
- Ising superconductivity induced from spin-selective valley symmetry breaking in twisted trilayer graphene
- Anomalous Higgs oscillations mediated by Berry curvature and quantum metric
- A Sport and a Pastime: Model Design and Computation in Quantum Many-Body Systems
- Revisiting Bloch electrons in magnetic field: Hofstadter physics via hybrid Wannier states
- Sjqvist quantum geometric tensor of finite-temperature mixed states
- Neutral magic-angle bilayer graphene: Condon instability and chiral resonances
- Atomistic theory of moiré Hofstadter's butterfly in magic-angle graphene
- Moiré Landau levels of a -symmetric twisted bilayer system in the absence of a magnetic field
- Band manipulation and spin texture in interacting moiré helical edges
- The low energy excitation spectrum of magic-angle semimetals
- Topological magnons and domain walls in twisted bilayer MoTe
- Vacancy-induced tunable Kondo effect in twisted bilayer graphene
- Capturing magic angles in twisted bilayer graphene from information theory markers
- Fractional Chern insulator candidate in twisted bilayer checkboard lattice
- Identifying Instabilities with Quantum Geometry in Flat Band Systems
- Nonflat bands and chiral symmetry in magic-angle twisted bilayer graphene
- Ferromagnetism vs. Antiferromagnetism in Narrow-Band Systems: Competition Between Quantum Geometry and Band Dispersion
- Quantum-geometric dipole: a topological boost to flavor ferromagnetism in flat bands
- Spinless and spinful charge excitations in moiré Fractional Chern Insulators
- An effective curved space-time geometric theory of generic twist angle graphene with application to a rotating bilayer configuration
- Brillouin zone folding method for quasiperiodic superconductivity in multilayer systems: application to electronic structure and optical responses
- Mean-field Modelling of Moiré Materials: A User's Guide with Selected Applications to Twisted Bilayer Graphene
- Collective excitations of the Chern-insulator states in commensurate double moiré superlattices of twisted bilayer graphene on hexagonal boron nitride
- Flat-band projected versus fully atomistic twisted bilayer graphene
- Real space representation of topological system: twisted bilayer graphene as an example
- Non-Abelian line graph: A generalized approach to flat bands
- Magnetism of magic-angle twisted bilayer graphene
- Evolution of quantum geometric tensor of 1D periodic systems after a quench
- Particle-hole asymmetric phases in doped twisted bilayer graphene
- High conductivity from cross-band electron pairing in flat-band systems