Vacancy-induced tunable Kondo effect in twisted bilayer graphene
arXiv:2312.09286 · doi:10.1103/PhysRevLett.133.126503
Abstract
In single sheets of graphene, vacancy-induced states have been shown to host an effective spin-1/2 hole that can be Kondo-screened at low temperatures. Here, we show how these vacancy-induced impurity states survive in twisted bilayer graphene (TBG), which thus provides a tunable system to probe the critical destruction of the Kondo effect in pseudogap hosts. Ab-initio calculations and atomic-scale modeling are used to determine the nature of the vacancy states in the vicinity of the magic angle in TBG, demonstrating that the vacancy can be treated as a quantum impurity. Utilizing this insight, we construct an Anderson impurity model with a TBG host that we solve using the numerical renormalization group combined with the kernel polynomial method. We determine the phase diagram of the model and show how there is a strict dichotomy between vacancies in the AA/BB versus AB/BA tunneling regions. In AB/BA vacancies, the Kondo temperature at the magic angle develops a broad distribution with a tail to vanishing temperatures due to multifractal wavefunctions at the magic angle. We argue that scanning tunneling microscopy in the vicinity of the vacancy can act as a probe of both the critical single-particle states and the underlying many-body ground state in magic-angle TBG.
7 pages, 4 figures; including Supplementary Material (11 pages, 12 figures)
References in corpus (100)
- Magic-angle graphene superlattices: a new platform for unconventional superconductivity
- Correlated Insulator Behaviour at Half-Filling in Magic Angle Graphene Superlattices
- Wannier90: A Tool for Obtaining Maximally-Localised Wannier Functions
- Moire bands in twisted double-layer graphene
- Wannier90 as a community code: new features and applications
- Superconductors, Orbital Magnets, and Correlated States in Magic Angle Bilayer Graphene
- The numerical renormalization group method for quantum impurity systems
- Observation of Van Hove singularities in twisted graphene layers
- The Kernel Polynomial Method
- Optical detection of Mott and generalized Wigner crystal states in WSe2/WS2 moiré superlattices
- Magic continuum in twisted bilayer WSe2
- Dirac materials
- Graphene Bilayers with a Twist
- Origin of Magic Angles in Twisted Bilayer Graphene
- Hubbard model physics in transition metal dichalcogenide moiré bands
- Atomic and electronic reconstruction at van der Waals interface in twisted bilayer graphene
- Single Layer Behavior and Its Breakdown in Twisted Graphene Layers
- Maximally-localized Wannier orbitals and the extended Hubbard model for the twisted bilayer graphene
- Defects in correlated metals and superconductors
- Topological Superconductivity in Twisted Multilayer Graphene
- Superlattice-induced insulating states and valley-protected orbits in twisted bilayer graphene
- Faithful Tight-binding Models and Fragile Topology of Magic-angle Bilayer Graphene
- Tunable Kondo Effect in Graphene with Defects
- Sum-rule Conserving Spectral Functions from the Numerical Renormalization Group
- Flat bands in twisted bilayer transition metal dichalcogenides
- Strong coupling phases of partially filled twisted bilayer graphene narrow bands
- Quantum Criticality in Twisted Transition Metal Dichalcogenides
- Symmetry, maximally localized Wannier states, and low energy model for the twisted bilayer graphene narrow bands
- Electrostatic effects, band distortions and superconductivity in twisted graphene bilayers
- Ground State and Hidden Symmetry of Magic Angle Graphene at Even Integer Filling
- An exact continuum model for low-energy electronic states of twisted bilayer graphene
- MATBG as Topological Heavy Fermion: I. Exact Mapping and Correlated Insulators
- Non-abelian symmetries in tensor networks: a quantum symmetry space approach
- Skyrmions in the moiré of van der Waals 2D magnets
- Optimal Hubbard models for materials with nonlocal Coulomb interactions: graphene, silicene and benzene
- The pseudo-Landau-level representation of twisted bilayer graphene: band topology and the implications on the correlated insulating phase
- A Numerical Renormalization Group approach to Green's Functions for Quantum Impurity Models
- Twisted Bilayer Graphene IV. Exact Insulator Ground States and Phase Diagram
- Nanoserpents: Graphene Nanoribbons Motion on Two-Dimensional Hexagonal Materials
- Twisted bilayer graphene III. Interacting Hamiltonian and exact symmetries
- The crucial role of atomic corrugation on the flat bands and energy gaps of twisted bilayer graphene at the "magic angle"
- Doped Twisted Bilayer Graphene near Magic Angles: Proximity to Wigner Crystallization not Mott Insulation
- Twisted bilayer graphene. II. Stable symmetry anomaly
- High-temperature topological superconductivity in twisted double layer copper oxides
- Twisted Bilayer Graphene V: Exact Analytic Many-Body Excitations in Twisted Bilayer Graphene Coulomb Hamiltonians: Charge Gap, Goldstone Modes and Absence of Cooper Pairing
- Atomic Bose-Einstein condensate in a twisted-bilayer optical lattice
- Towards the hidden symmetry in Coulomb interacting twisted bilayer graphene: renormalization group approach
- Realization of a Tunable Artificial Atom at a Supercritically Charged Vacancy in Graphene
- The Physics of Kondo Impurities in Graphene
- Phase transitions in the pseudogap Anderson and Kondo models: Critical dimensions, renormalization group, and local-moment criticality
- Electronic structure of the substitutional vacancy in graphene: Density-functional and Green's function studies
- A Microscopic Perspective on Moiré Materials
- Helical Network Model for Twisted Bilayer Graphene
- A critical analysis of vacancy-induced magnetism in mono and bilayer graphene
- Twisted bilayer graphene I. Matrix elements, approximations, perturbation theory and a 2-Band model
- Cold atoms in twisted bilayer optical potentials
- Disorder in Twisted Bilayer Graphene
- Critical local-moment fluctuations, anomalous exponents, and omega/T scaling in the Kondo problem with a pseudogap
- Upper-critical dimension in a quantum impurity model: Critical theory of the asymmetric pseudogap Kondo problem
- Tensor networks and the numerical renormalization group
- Kondo lattice model in magic-angle twisted bilayer graphene
- Derivation of Wannier orbitals and minimal-basis tight-binding hamiltonians for twisted bilayer graphene: a first-principles approach
- Presence of -wave pairing in Josephson junctions made of twisted ultrathin BiSrCaCuO flakes
- Kondo Lattice Model of Magic-Angle Twisted-Bilayer Graphene: Hund's Rule, Local-Moment Fluctuations, and Low-Energy Effective Theory
- Spin-twisted Optical Lattices: Tunable Flat Bands and Larkin-Ovchinnikov Superfluids
- Magic-angle semimetals
- Inducing Kondo Screening of Vacancy Magnetic Moments in Graphene with Gating and Local Curvature
- X-Symbols for Non-Abelian Symmetries in Tensor Networks
- Quantum Critical Transition and Kondo Screening of Magnetic Moments in Graphene
- Non-Fermi-Liquid Behavior in Metallic Quasicrystals with Local Magnetic Moments
- Doublon-holon origin of the subpeaks at the Hubbard band edges
- Symmetric Kondo Lattice States in Doped Strained Twisted Bilayer Graphene
- Adaptive broadening to improve spectral resolution in the numerical renormalization group
- Interactions and magnetic moments near vacancies and resonant impurities in graphene
- Kondo Phase in Twisted Bilayer Graphene -- A Unified Theory for Distinct Experiments
- Universal crossovers and critical dynamics of quantum phase transitions: A renormalization group study of the pseudogap Kondo problem
- At which magnetic field, exactly, does the Kondo resonance begin to split? A Fermi liquid description of the low-energy properties of the Anderson model
- Magic angles and correlations in twisted nodal superconductors
- 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
- Current- and field-induced topology in twisted nodal superconductors
- Density-matrix based determination of low-energy model Hamiltonians from ab initio wavefunctions
- Kondo-Anderson Transitions
- Critical Kondo destruction in a pseudogap Anderson model: scaling and relaxational dynamics
- An accurate tight binding model for twisted bilayer graphene describes topological flat bands without geometric relaxation
- Critical Metal Phase at the Anderson Metal-Insulator Transition with Kondo Impurities
- Coulomb charging energy of vacancy-induced states in graphene
- Disorder-mediated Kondo effect in graphene
- Universal Distribution of Kondo Temperatures in Dirty Metals
- Quantum criticality in the pseudogap Bose-Fermi Anderson and Kondo models: Interplay between fermion- and boson-induced Kondo destruction
- Long-range entanglement near a Kondo-destruction quantum critical point
- Modeling of gate controlled Kondo effect at carbon point-defects in graphene
- Kondo effect in twisted bilayer graphene
- Scaling theory of intrinsic Kondo and Hund's rule interactions in magic-angle twisted bilayer graphene
- Entanglement Entropy Near Kondo-Destruction Quantum Critical Points
- Multifractality and the distribution of the Kondo temperature at the Anderson transition
- Tunneling spectra of impurity states in unconventional superconductors
- The Aubry-Andre Anderson model: Magnetic impurities coupled to a fractal spectrum
- Critical local moment fluctuations and enhanced pairing correlations in a cluster Anderson model
- Distribution of critical temperature at Anderson localization