Strong magnetophonon oscillations in extra-large graphene
arXiv:1905.00386 · doi:10.1038/s41467-019-11379-3
Abstract
Van der Waals materials and their heterostructures offer a versatile platform for studying a variety of quantum transport phenomena due to their unique crystalline properties and the exceptional ability in tuning their electronic spectrum. However, most experiments are limited to devices that have lateral dimensions of only a few micrometres. Here, we perform magnetotransport measurements on graphene/hexagonal boron-nitride Hall bars and show that wider devices reveal additional quantum effects. In devices wider than ten micrometres we observe distinct magnetoresistance oscillations that are caused by resonant scattering of Landau-quantised Dirac electrons by acoustic phonons in graphene. The study allows us to accurately determine graphene's low energy phonon dispersion curves and shows that transverse acoustic modes cause most of phonon scattering. Our work highlights the crucial importance of device width when probing quantum effects and also demonstrates a precise, spectroscopic method for studying electron-phonon interactions in van der Waals heterostructures.
23 pages and 9 figures, including supplementary information
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Cited by in corpus (20)
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- Magnetophonons & type-B Goldstones from Hydrodynamics to Holography
- Long-range ballistic transport of Brown-Zak fermions in graphene superlattices
- Excellent electronic transport in heterostructures of graphene and monoisotopic boron-nitride grown at atmospheric pressure
- Observation of terahertz-induced magnetooscillations in graphene
- Strong interminivalley scattering in twisted bilayer graphene revealed by high-temperature magnetooscillations
- Anomalous terahertz photoconductivity caused by the superballistic flow of hydrodynamic electrons in graphene
- Magnetophonon spectroscopy of Dirac Fermion scattering by transverse and longitudinal acoustic phonons in graphene
- Phonon-mediated room-temperature quantum Hall transport in graphene
- Electrically-driven amplification of terahertz acoustic waves in graphene
- Demonstration of high sensitivity of microwave-induced resistance oscillations to circular polarization
- Full consideration of acoustic phonon scatterings in two-dimensional Dirac materials
- Observation of High Harmonics of the Cyclotron Resonance in Microwave Transmission of a High-Mobility Two-Dimensional Electron System
- Graphene's non-equilibrium fermions reveal Doppler-shifted magnetophonon resonances accompanied by Mach supersonic and Landau velocity effects
- Impact of novel electron-phonon coupling mechanisms on valley physics in two-dimensional materials
- Bloch-Grüneisen temperature and universal scaling of normalized resistivity in doped graphene revisited
- Effect of Berry Phase on Nonlinear Response of Two-dimensional Fermions
- Milli-Tesla Quantization enabled by Tuneable Coulomb Screening in Large-Angle Twisted Graphene
- Anomalous circular phonon dichroism in transition metal dichalcogenides
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