Symmetry Origin of Lattice Vibration Modes in Twisted Multilayer Graphene: Phasons vs Moiré Phonons
arXiv:2205.06830 · doi:10.1103/PhysRevB.106.075420
Abstract
Lattice dynamics play a crucial role in the physics of Moiré systems. In twisted bilayer graphene (TBG), it was shown that, in addition to the graphene phonons, there is another set of gapless excitations termed Moiré Phonons [Phys. Rev. B, 075416, 2019] reflecting the lattice dynamics at the Moire superlattice level. These modes were later suggested to be phasons due to the incommensurate stacking of the two graphene layers [Phys. Rev. B, 155426, 2019]. In this work, we elucidate the equivalence of these two seemingly distinct perspectives by identifying an underlying symmetry, which we dub mismatch symmetry, that exists for any twist angle. For commensurate angles, this is a discrete symmetry whereas for incommensurate angles, it is equivalent to a continuous phase symmetry giving rise to phason modes. In the small angle limit, such symmetry becomes a continuous local symmetry whose spontaneous breaking gives rise to Moiré phonons as its Goldstone mode. We derive an effective field theory for these collective modes in TBG in precise agreement with the full model and discuss their different properties. Our analysis is then generalized to twisted multilayer graphene (TMG) where we identify higher order mismatch and deduce the count of gapless modes including graphene phonons, Moiré phonons and phasons. Especially, we study twisted mirror-symmetric trilayer graphene with an alternating twist angle and find that it can be mapped to a TBG with the re-scaled twist angle , hosting the same Moiré phonon modes in the even mirror sector with an additional set of gapped modes in the odd sector. Our work presents a systematic study of lattice symmetries in TMG providing insights into its unique lattice dynamics.
21 pages, 8 figures
References in corpus (10)
- Tunable Phase Boundaries and Ultra-Strong Coupling Superconductivity in Mirror Symmetric Magic-Angle Trilayer Graphene
- Lattice relaxation and energy band modulation in twisted bilayer graphenes
- Electric field tunable unconventional superconductivity in alternating twist magic-angle trilayer graphene
- Gauge phonon dominated resistivity in twisted bilayer graphene near magic angle
- Effective Field Theory for Quasicrystals and Phasons Dynamics
- Degradation of phonons in disordered moiré superlattices
- Raman spectra of twisted bilayer graphene close to the magic angle
- Tunable electron-phonon interactions in long-period superlattices
- Fracton-elasticity duality in twisted moiré superlattices
- A new paradigm for the low-T glassy-like thermal properties of solids
Cited by in corpus (22)
- Mapping twist-tuned multiband topology in bilayer WSe
- Multi-scale lattice relaxation in general twisted trilayer graphenes
- Measuring Phonon Dispersion and Electron-Phason Coupling in Twisted Bilayer Graphene with a Cryogenic Quantum Twisting Microscope
- Theory of Generalized Landau Levels and Implication for non-Abelian States
- Electron-phonon coupling and competing Kekulé orders in twisted bilayer graphene
- Moiré phonons and impact of electronic symmetry breaking in twisted trilayer graphene
- Moiré phonons in graphene/hexagonal boron nitride moiré superlattice
- Intrinsically-multilayer moiré heterostructures
- Extended linear-in- resistivity due to electron-phason scattering in moiré superlattices
- Glassy heat capacity from overdamped phasons and a hypothetical phason-induced superconductivity in incommensurate structures
- Flat and tunable moire phonons in twisted transition-metal dichalcogenides
- Electrons surf phason waves in moiré bilayers
- Moiré Band Engineering in Twisted Trilayer WSe2
- A critical nematic phase with pseudogap-like behavior in twisted bilayers
- Low-temperature thermal transport in moiré superlattices
- Theory of phonon sidebands in the absorption spectra of moiré exciton-polaritons
- Charged moiré phonons in twisted bilayer graphene
- Theory for Lattice Relaxation in Marginal Twist Moirés
- Sliding phasons in Moiré Ladders
- Electric backaction on moiré mechanics
- Twist-Tuned Magnonic Nanocavity Mode in a Trilayer Moiré Superlattice
- Moiré Folded Helical States at the Interfaces of Heterostructures