Moiré bands in twisted double-layer graphene
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Summary
This work addresses the electronic structure of a twisted two-layer graphene system, showing that in its continuum Dirac model the moiré pattern periodicity leads to moirÉ Bloch bands.
- Type
- article
- Published
- 2010-09-21
- Cited by
- 3,010
- References
- 32
- Access
- Open access
- OpenAlex
- https://openalex.org/W2127169435
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:32458986
Keywords
Moiré pattern, Twist, Graphene, Condensed matter physics, Physics
References
- Flat bands in slightly twisted bilayer graphene: Tight-binding calculations
- Localization of dirac electrons in rotated graphene bilayers.
- Band structure of ABC-stacked graphene trilayers
- The Theory of the Moiré Phenomenon
- Low energy excitations in graphite: The role of dimensionality and lattice defects
- Tight-binding approach to uniaxial strain in graphene
- Electronic structure of turbostratic graphene
- Transport Between Twisted Graphene Layers
- Trigonal warping and Berry's phase Nπ in ABC-stacked multilayer graphene
- Electronic properties of bilayer and multilayer graphene
- Mobilities and Scattering Times in Decoupled Graphene Monolayers
- Orbital diamagnetism in multilayer graphenes : Systematic study with the effective mass approximation
- Crystallographically oriented high resolution lithography of graphene nanoribbons by STM lithography
- Environment-dependent tight-binding potential model.
- Chiral decomposition in the electronic structure of graphene multilayers
- Graphene bilayer with a twist: electronic structure.
- Landau-level degeneracy and quantum Hall effect in a graphite bilayer.
- Quantum interference at the twist boundary in graphene.
- Commensuration and interlayer coherence in twisted bilayer graphene
- Electronic effects in scanning tunneling microscopy: Moiré pattern on a graphite surface.
Cited by
- Electronic Structures and Their Landau Quantizations in Twisted Graphene Bilayer and Trilayer
- Tunable Optical Excitations in Twisted Bilayer Graphene Form Strongly Bound Excitons.
- Landau quantization and Fermi velocity renormalization in twisted graphene bilayers
- Tunneling conductance of telescopic contacts between graphene layers with and without dielectric spacer
- Superlattice effects in graphene on SiC(0001) and Ir(111) probed by ARPES
- Structure, energetic and tribological properties, and possible applications in NEMS of argon-separated double-layer graphene
- Evolution of the electronic band structure of twisted bilayer graphene upon doping
- Evolution of interlayer coupling in twisted molybdenum disulfide bilayers
- Moiré superlattice effects in graphene/boron‐nitride van der Waals heterostructures
- Electronic Properties of Incommensurate Atomic Layers
- The electronic band structures and optical absorption spectra for incommensurate twisted few-layers graphene
- AA stacking, tribological and electronic properties of double-layer graphene with krypton spacer.
- Enhanced ultra-low-frequency interlayer shear modes in folded graphene layers
- Angle-resolved Raman imaging of interlayer rotations and interactions in twisted bilayer graphene.
- Van Hove singularities and excitonic effects in the optical conductivity of twisted bilayer graphene.
- Fractal Landau-level spectra in twisted bilayer graphene.
- Fourier Transform Analysis of STM Images of Multilayer Graphene Moir\'e Patterns
- Interlayer coupling in rotationally faulted multilayer graphenes
- Colloquium: Graphene spectroscopy
- Optical absorption spectrum of rotated trilayer graphene
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