Composite Fermions and Broken Symmetries in Graphene
arXiv:1410.3549 · doi:10.1038/ncomms6838
Abstract
The electronic properties of graphene are described by a Dirac Hamiltonian with a fourfold symmetry of spin and valley. This symmetry may yield novel fractional quantum Hall (FQH) states at high magnetic field depending on the relative strength of symmetry breaking interactions. However, observing such states in transport remains challenging in graphene, as they are easily destroyed by disorder. In this work, we observe in the first two Landau levels (v<6) the composite-fermion sequences of FQH states at p/(2p+1) between each integer filling factor. In particular, odd numerator fractions appear between v=1 and v=2, suggesting a broken valley symmetry, consistent with our observation of a gap at charge neutrality and zero field. Contrary to our expectations, the evolution of gaps in a parallel magnetic field suggests that states in the first Landau level are not spin-polarized even up to very large out of plane fields.
References in corpus (19)
- The electronic properties of graphene
- Ultrahigh electron mobility in suspended graphene
- Boron nitride substrates for high-quality graphene electronics
- STM Spectroscopy of ultra-flat graphene on hexagonal boron nitride
- Emergence of Superlattice Dirac Points in Graphene on Hexagonal Boron Nitride
- Quantum-limited shot noise in graphene
- Quantum Hall Ferromagnetism in Graphene
- Landau Level Splitting in Graphene in High Magnetic Fields
- Multicomponent fractional quantum Hall effect in graphene
- Electron interactions in graphene in a strong magnetic field
- Zero Energy Modes and Gate-Tunable Gap in Graphene on hexagonal Boron Nitride
- The Fractional Quantum Hall States of Dirac Electrons in Graphene
- Fractional Quantum Hall Effect in Graphene
- Analysis of a SU(4) generalization of Halperin's wave function as an approach towards a SU(4) fractional quantum Hall effect in graphene sheets
- The Effects of Landau level mixing on the fractional quantum Hall effect in monolayer Graphene
- Chiral Symmetry Breaking and the Quantum Hall Effect in Monolayer Graphene
- Composite Dirac fermions in graphene
- Atypical Fractional Quantum Hall Effect in Graphene at Filling Factor 1/3
- Theoretical expectations for a fractional quantum Hall effect in graphene
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- Thirty Years of Composite Fermions and Beyond
- Wavefunctionology: The Special Structure of Certain Fractional Quantum Hall Wavefunctions
- Parton construction of particle-hole-conjugate Read-Rezayi parafermion fractional quantum Hall states and beyond
- High quality electrostatically defined hall bars in monolayer graphene
- Microscopic Study of the Halperin - Laughlin Interface through Matrix Product States
- A non-Abelian fractional quantum Hall state at filled Landau level
- Fractional quantum Hall effect with unconventional pairing in monolayer graphene
- Proximity screening greatly enhances electronic quality of graphene
- Application of path-integral quantization to indistinguishable particle systems topologically confined by a magnetic field
- Theory of Competing Charge Density Wave, Kekule and Antiferromagnetic ordered Fractional Quantum Hall states in Graphene aligned with Boron Nitride
- Local density of states and particle entanglement in topological quantum fluids
- Fingerprints of Composite Fermion Lambda Levels in Scanning Tunneling Microscopy
- Competition between fractional quantum Hall liquid and electron solid phases in the Landau levels of multilayer graphene
- Theory of broken symmetry quantum Hall states in the Landau level of Graphene
- Forbidden trajectories for path integrals
- Nonlinear Transport of Graphene in the Quantum Hall Regime
- Fractional quantum Hall coexistence phases in higher Landau levels of graphene
- Magnetic and Lattice Ordered Fractional Quantum Hall Phases in Graphene
- Competing Laughlin state and Wigner crystal in bilayer graphene
- Integer Quantum Hall Effect of Interacting Electrons in Graphene
- Probing the fractional quantum Hall phases in valley-layer locked bilayer MoS
- Full, three-quarter, half and quarter Wigner crystals in Bernal bilayer graphene
- Dispersion of collective modes in spinful fractional quantum Hall states on the sphere
- Probing fractional quantum Hall effect by photoluminescence
- Anomalous Transport Gaps of Fractional Quantum Hall Phases in Graphene Landau Levels are Induced by Spin-Valley Entangled Ground States
- Collective excitations of fractional quantum Hall states in monolayer graphene
- Composite fermions and parton wavefunctions in twisted graphene on hexagonal boron nitride
- Topological correlations and breaking of fermionic antisymmetry of electrons in FQHE
- A note on degeneracy of excited energy levels in massless Dirac fermions
- Skyrmionic Transport and First Order Phase Transitions in Twisted Bilayer Graphene Quantum Hall Ferromagnet