Phonons in magic-angle twisted bilayer graphene
arXiv:2112.13240 · doi:10.1021/acs.nanolett.2c02010
Abstract
Magic-angle twisted bilayer graphene (TBG) has attracted significant interest recently due to the discoveries of diverse correlated and topological states in this system. Despite the extensive research on the electron-electron interaction effects and topological properties of the electrons, the phonons of magic-angle TBG are relatively less explored. In this work, we study the phonon properties in magic-angle TBG based on \textit{ab} \textit{initio} deep potential molecular dynamics. We have calculated phonon band structures and density of states at the magic angle, and have systematically analyzed the phonon eigenmodes at high-symmetry points in the moiré Brillouin zone. In particular, at the moiré point, we have discovered a number of soft modes which can exhibit dipolar-like, stripe-like, and octupolar-like vibrational patterns within the moiré supercell, as well as some "vortical" modes with nonzero curl in real space. At the moiré / points, there are time-reversal breaking chiral phonon modes with nonzero local phonon polarizations. We have further studied the phonon effects on the electronic structures by freezing certain soft phonon modes. We find that if a soft "stripe" phonon mode at moiré point is assumed to be frozen, the system would exhibit a charge order which naturally explains the recent observations from scanning tunnelling microscopy. Moreover, there are also low-frequency -breaking modes at moiré point, which would gap out the Dirac points at the charge neutrality point once these modes get frozen. This provides a new perspective to the origin of correlated insulator state at the charge neutrality point.
12 pages and 9 figures
References in corpus (17)
- Lattice relaxation and energy band modulation in twisted bilayer graphenes
- Fractional Chern insulators in magic-angle twisted bilayer graphene
- The Phase Diagram of a Deep Potential Water Model
- MATBG as Topological Heavy Fermion: I. Exact Mapping and Correlated Insulators
- Deep Potentials for Materials Science
- Structure of twisted and buckled bilayer graphene
- Deep Learning of Accurate Force Field of Ferroelectric HfO
- Global Phase Diagram of the Normal State of Twisted Bilayer Graphene
- Exact Diagonalization for Magic-Angle Twisted Bilayer Graphene
- Momentum space quantum Monte Carlo on twisted bilayer Graphene
- Liquid-Liquid Critical Point in Phosphorus
- Dichotomy of Electron-Phonon Coupling in Graphene Moiré Flat Bands
- Spectroscopy of Twisted Bilayer Graphene Correlated Insulators
- Reentrant Correlated Insulators in Twisted Bilayer Graphene at 25T ( Flux)
- Correlated insulators, density wave states, and their nonlinear optical response in magic-angle twisted bilayer graphene
- Exciton Proliferation and Fate of the Topological Mott Insulator in a Twisted Bilayer Graphene Lattice Model
- Current Switching of Valley Polarization in Twisted Bilayer Graphene
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- DPmoire: A tool for constructing accurate machine learning force fields in moiré systems
- Flat and tunable moire phonons in twisted transition-metal dichalcogenides
- General Electronic Structure Calculation Method for Twisted Systems
- Atomistic theory of moiré Hofstadter's butterfly in magic-angle graphene
- Long wavelength interdomain phonons and instability of dislocations in small-angle twisted bilayers
- Charged moiré phonons in twisted bilayer graphene
- Theory for Lattice Relaxation in Marginal Twist Moirés
- Microscopic theory for electron-phonon coupling in twisted bilayer graphene
- Quasi-bound layer-breathing phonons inside perfect dislocations of lattice-relaxed twisted bilayers
- Enhanced Phonon-Assisted Tunneling in Metal -- Twisted Bilayer Graphene Junctions
- Relaxation and Its Effects on Electronic Structure in Twisted Systems: An Analytical Perspective