Experimental evidence for direct insulator-quantum Hall transition in multi-layer graphene
arXiv:1311.0353 · doi:10.1186/1556-276X-8-214
Abstract
We have performed magnetotransport measurements on a multi-layer graphene flake. At the crossing magnetic field Bc, an approximately temperature-independent point in the measured longitudinal resistivity, which is ascribed to the direct insulator-quantum Hall (I-QH) transition, is observed. By analyzing the amplitudes of the magnetoresistivity oscillations, we are able to measure the quantum mobility of our device. It is found that at the direct I-QH transition, the product of the quantum mobility and is about 0.37 which is considerably smaller than 1. In contrast, at Bc, the longitudinal resistivity is close to the Hall resistivity, i.e., the product of the classical mobility and the crossing field is about 1. Therefore our results suggest that different mobilities need to be introduced for the direct I-QH transition observed in multi-layered graphene. Combined with existing experimental results obtained in various material systems, our data obtained on graphene suggest that the direct I-QH transition is a universal effect in 2D.
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References in corpus (13)
- Electric Field Effect in Atomically Thin Carbon Films
- Universal Dynamic Conductivity and Quantized Visible Opacity of Suspended Graphene
- Control of graphene's properties by reversible hydrogenation
- Chaotic Dirac billiard in graphene quantum dots
- The zero-energy state in graphene in a high magnetic field
- Screening and interlayer coupling in multilayer graphene field-effect transistors
- Colossal negative magnetoresistance in dilute fluorinated graphene
- Collective modes of doped graphene and a standard 2DEG in a strong magnetic field: linear magneto-plasmons versus magneto-excitons
- Magnetoplasmons in layered graphene structures
- Non-Ergodicity & Microscopic Symmetry Breaking of the Conductance Fluctuations in Disordered Mesoscopic Graphene
- Non-Ohmic behavior of carrier transport in highly disordered graphene
- Probing Landau quantisation with the presence of insulator-quantum Hall transition in a GaAs two-dimensional electron system
- Insulator, semiclassical oscillations and quantum Hall liquids at low magnetic fields