Graphite, graphene and the flat band superconductivity
arXiv:1803.08799 · doi:10.1134/S0021364018080052
Abstract
Superconductivity with transition temperature K has been reported in bilayer graphene [1,2]. The main factors, which may shed light on the mechanism of the formation of this superconductivity, are the following. Superconductivity is observed in bilayer graphene, when the two layers are twisted, and the maximum of takes place at the "magic angle" of twist, at which the electronic band structure becomes nearly flat. The same factors have been suggested [3] to explain the experiments in graphite [4-8], which reported high-T superconductivity in highly oriented pyrolytic graphite (HOPG). The hints of room-T superconductivity are present, only when the sample contains quasi two-dimensional interfaces between the domains of HOPG. These domains should be twisted with respect to each other in order to form the flat band in electronic spectrum. This dispersionless energy spectrum has a singular density of states, which provides the transition temperature being proportional to the coupling constant instead of the exponential suppression. The graphite and its superconductivity is now becoming the mainstream. One may say that we are coming to graphite era of superconductivity. It is time to combine the theoretical and experimental efforts to reach the bulk room-T superconductivity in graphite and in similar real or artificial materials.
3 pages, no figures, accepted in JETP Letters, JETP Letters style
References in corpus (11)
- Magic-angle graphene superlattices: a new platform for unconventional superconductivity
- Correlated Insulator Behaviour at Half-Filling in Magic Angle Graphene Superlattices
- Band geometry, Berry curvature and superfluid weight
- Strain-induced partially flat band, helical snake states, and interface superconductivity in topological crystalline insulators
- Band-Contact Lines in Electron Energy Spectrum of Graphite
- Evidence of Josephson-coupled superconducting regions at the interfaces of Highly Oriented Pyrolytic Graphite
- Identification of a possible superconducting transition above room temperature in natural graphite crystals
- Two topologically distinct Dirac-line semimetal phases and topological phase transitions in rhombohedrally stacked honeycomb lattices
- Merging of Landau levels in a strongly-interacting two-dimensional electron system in silicon
- Dirac points of electron energy spectrum, band-contact lines, and electron topological transitions of 3 1/2 kind in three-dimensional metals
- Local Magnetic Measurements of Trapped Flux Through a Permanent Current Path in Graphite
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- Twisted Bilayer Graphene: A Phonon Driven Superconductor
- Failure of Nielsen-Ninomiya theorem and fragile topology in two-dimensional systems with space-time inversion symmetry: application to twisted bilayer graphene at magic angle
- Band Structure of Twisted Bilayer Graphene: Emergent Symmetries, Commensurate Approximants and Wannier Obstructions
- Model for Metal-Insulator Transition in Graphene Superlattices and Beyond
- Chiral SDW and d + id superconductivity in the magic-angle twisted bilayer-graphene
- Unconventional Superconductivity and Density Waves in Twisted Bilayer Graphene
- Kohn-Luttinger Superconductivity in Twisted Bilayer Graphene
- Phases of a phenomenological model of twisted bilayer graphene
- Mean-field theory for superconductivity in twisted bilayer graphene
- Superconductivity from Valley Fluctuations and Approximate SO(4) Symmetry in a Weak Coupling Theory of Twisted Bilayer Graphene
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- Superconductivity and correlated phases in non-twisted bilayer and trilayer graphene
- Nematic superconductivity stabilized by density wave fluctuations: Possible application to twisted bilayer graphene
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- Strong coupling nature of kagome superconductivity in LaRuSi
- Flat-band engineering in tight-binding models: Beyond the nearest-neighbor hopping
- Flatband generator in two dimensions
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- Crystal Net Catalog of Model Flat Band Materials
- Singlet superconductivity enhanced by charge order in nested twisted bilayer graphene Fermi surfaces
- Effective Floquet Hamiltonians for periodically-driven twisted bilayer graphene
- Floquet engineering of interlayer couplings: Tuning the magic angle of twisted bilayer graphene at the exit of a waveguide
- Flat-band ferromagnetism in twisted bilayer graphene
- Floquet-engineering topological transitions in a twisted transition metal dichalcogenide homobilayer
- Orbital Design of Flat Bands in Non-Line-Graph Lattices via Line-Graph Wavefunctions
- Marginal Fermi liquid in twisted bilayer graphene
- Dirac points, spinons and spin liquid in twisted bilayer graphene
- Topological flat bands in strained graphene: substrate engineering and optical control
- Superconducting Sweet-Spot in Microcrystalline Graphite Revealed by Point-Contact Spectroscopy
- Excitonic Laughlin States in Ideal Topological Insulator Flat Bands and Possible Presence in Moiré Superlattice Materials
- Flat band and Planckian metal
- Topological properties of multilayers and surface steps in the SnTe material class
- Possible high temperature superconducting transitions in disordered graphite obtained from room temperature deintercalated KC
- Time-reversal versus chiral symmetry breaking in twisted bilayer graphene
- Non-Hermitian flatband generator in one dimension
- Enhanced correlations and superconductivity in weakly interacting partially flat band systems: a determinantal quantum Monte Carlo study
- Wannier-Stark flatbands in Bravais lattices
- Quantum anomalous Hall phase in synthetic bilayers via twistless twistronics
- Magnetic phases from competing Hubbard and extended Coulomb interactions in twisted bilayer graphene
- Topological inverse Anderson insulator
- Theory of plasmonic edge states in chiral bilayer systems
- Impact of interactions on the superfluid density of dirty superconductors
- Quasidisorder Induced Topology
- High- Superconductivity Originating from Interlayer Coulomb Coupling in Gate-Charged Twisted Bilayer Graphene Moir Superlattices
- Topological disorder triggered by interaction-induced flattening of electron spectra in solids
- Nonintrinsic origin of the magnetic-field-induced metal-insulator and electronic phase transitions in graphite
- Topological nodal line in superfluid He and the Anderson theorem
- Superconductivity in twisted multilayer graphene: a smoking gun in recent condensed matter physics
- Ising superconductivity induced from spin-selective valley symmetry breaking in twisted trilayer graphene
- Influence of surface band bending on a narrow band gap semiconductor: Tunneling atomic force studies of graphite with Bernal and rhombohedral stacking orders
- Flat Bands and Compact Localised States: A Carrollian roadmap
- Andreev reflection for MnTe altermagnet candidate
- Unconventional superconductivity near a flat band in organic and organometallic materials
- Emergence of strain-induced moiré patterns and pseudo-magnetic field confined states in graphene
- Emergent flat band lattices in spatially periodic magnetic fields
- Strange metal phase of disordered magic-angle twisted bilayer graphene at low temperatures: from flatbands to weakly coupled Sachdev-Ye-Kitaev bundles
- Compact Wannier Functions in One Dimension
- Stacking sensitive topological phases in a bilayer Kane-Mele-Hubbard model at quarter filling
- Generalized transmon Hamiltonian for Andreev spin qubits
- Universal scaling behavior of heavy fermion compounds
- Yu-Shiba-Rusinov states, the BCS-BEC crossover, and the exact solution in the flat-band limit
- Bilayer twisting as a mean to isolate connected flat bands in a Kagome lattice through Wigner crystallization
- Preformed Cooper pairs in flat-band semimetals
- Excitonic effects in twisted bilayer graphene
- Record-Breaking Magnetoresistance at the Edge of a Microflake of Natural Graphite
- 50 years in the Landau Institute environment
- Flat bands in tight-binding lattices with anisotropic potentials
- Topological Triviality of Flat Hamiltonians
- Transport properties of strongly correlated Fermi systems
- Coalescence of Andreev bound states on the surface of a chiral topological semimetal
- Flat and almost flat bands in the quasi-one-dimensional Josephson junction array
- Singular flat bands in three dimensions: Landau level spreading, quantum geometry, and Weyl reconstruction
- Exceptional flat bands in bipartite non-Hermitian lattices