Experimental evidence for non-Abelian gauge potentials in twisted graphene bilayers
arXiv:1504.02519 · doi:10.1103/PhysRevB.92.081406
Abstract
The methods for realizing of non-Abelian gauge potentials have been proposed in many different systems in condensed matter1-5. The simplest realization among them may be in a graphene bilayer obtained by slightly relative rotation between the two layers4. Here we report the experimental evidence for non-Abelian gauge potentials in twisted graphene bilayers by scanning tunnelling microscopy and spectroscopy. At a magic twisted angle, theta ~ (1.11+/-0.05)deg, a pronounced sharp peak, which arises from the nondispersive flat bands at the charge neutrality point, are observed in the tunnelling density of states due to the action of the non-Abelian gauge fields4,6-8. Moreover, we observe confined electronic states in the twisted bilayer, as manifested by regularly spaced tunnelling peaks with energy spacing detal E ~ vF/D ~ 70 meV (here vF is the Fermi velocity of graphene and D is the period of the Moire patterns). Our results direct demonstrate that the non-Abelian gauge potentials in twisted graphene bilayers confine low-energy electrons into a triangular array of quantum dots following the modulation of the Moire patterns.
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References in corpus (9)
- Chiral tunneling and the Klein paradox in graphene
- Chaotic Dirac billiard in graphene quantum dots
- Flat Bands in Slightly Twisted Bilayer Graphene
- Single Layer Behavior and Its Breakdown in Twisted Graphene Layers
- Landau Quantization in Graphene Monolayer, Bernal Bilayer, and Bernal Trilayer on Graphite Surface
- Angle-Dependent van Hove Singularities and Their Breakdown in Twisted Graphene Bilayers
- Direct Probing Stacking Order and Electronic Spectrum of Rhombohedral Trilayer Graphene with Scanning Tunneling Microscopy
- Non-Abelian SU(2) gauge fields through density-wave order and strain in graphene
- Electronic Structures and Their Landau Quantizations in Twisted Graphene Bilayer and Trilayer
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- Direct imaging of topological edge states at a bilayer graphene domain wall
- Direct experimental evidence of pi magnetism of a single atomic vacancy in graphene
- Electrically Tunable Flat Bands and Magnetism in Twisted Bilayer Graphene
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- Twistronics in graphene-based van der Waals structures
- Experimental Observation of Surface States and Landau Levels Bending in Bilayer Graphene
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- Lowest-energy Moiré Band Formed by Dirac Zero Modes in Twisted Bilayer Graphene
- Observation of Chirality Transition of Quasiparticles at Stacking Solitons in Trilayer Graphene
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- Valley-Current Splitter in Minimally Twisted Bilayer Graphene
- Origami-controlled strain engineering of tunable flat bands and correlated states in folded graphene
- Coexistence of Reconstructed and Unreconstructed Structures in Structural Transition Regime of Twisted Bilayer Graphene
- Magic continuum in twisted bilayer square lattice with staggered flux
- Scanning tunneling microscopy and spectroscopy of nanoscale twisted bilayer graphene
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- Progress on band structure engineering of twisted bilayer and two-dimensional moiré heterostructures
- Moir{é} pattern assisted geometric resonant tunneling in disordered twisted bilayer graphene
- Direct observation of moiré flat-band breakdown at the edge of magic-angle twisted bilayer graphene
- Emergent flat band lattices in spatially periodic magnetic fields
- Magic radius of AA bilayer graphene quantum dot
- Spectroscopic Characterization of Landau Level Splitting and the Intermediate v = 0 Phase in Bilayer Graphene
- Spatially resolved electronic structure of twisted graphene
- Superconductivity and spin density wave in AA stacked bilayer graphene
- Universal properties of boundary and interface charges in multichannel one-dimensional continuum models
- Continuously Tunable Berry Phase and Valley-Polarized Energy Spectra in Bilayer Graphene Quantum Dots
- Spatial variation of energy gap and Landau levels around gapped bilayer graphene domain walls
- Terahertz Landau level spectroscopy of Dirac fermions in millimeter-scale twisted bilayer graphene