4.6 Article

Quantum Hall effect in graphene with twisted bilayer stripe defects

期刊

PHYSICAL REVIEW B
卷 87, 期 20, 页码 -

出版社

AMER PHYSICAL SOC
DOI: 10.1103/PhysRevB.87.205429

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资金

  1. EU through FP7 STREP ConceptGraphene
  2. Swedish Foundation for Strategic Research
  3. CSIC JAE-Doc program
  4. Spanish Ministry of Science and Innovation [FIS2011-23713, FIS2009-08744]
  5. European Research Council Advanced Grant [290846]
  6. National Science Foundation [NSF PHY05-51164]

向作者/读者索取更多资源

We analyze the quantum Hall effect in single layer graphene with bilayer stripe defects. Such defects are often encountered at steps in the substrate of graphene grown on silicon carbide. We show that AB or AA stacked bilayer stripes result in large Hall conductivity fluctuations that destroy the quantum Hall plateaux. The fluctuations are a result of the coupling of edge states at opposite edges through currents traversing the stripe. Upon rotation of the second layer with respect to the continuous monolayer (a twisted-bilayer stripe defect), such currents decouple from the extended edge states and develop into long-lived discrete quasibound states circulating around the perimeter of the stripe. Backscattering of edge modes then occurs only at precise resonant energies, and hence the quantum Hall plateaux are recovered as twist angle grows.

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