Metal-insulator transition in hydrogenated graphene as manifestation of quasiparticle spectrum rearrangement of anomalous type
arXiv:1008.2559 · doi:10.1103/PhysRevB.83.085421
Abstract
We demonstrate that the spectrum rearrangement can be considered as a precursor of the metal-insulator transition observed in graphene dosed with hydrogen atoms. The Anderson-type transition is attributed to the coincidence between the Fermi level and the mobility edge, which appearance is induced by the spectrum rearrangement. Available experimental data are thoroughly compared to the theoretical results for the Lifshitz impurity model.
References in corpus (10)
- The electronic properties of graphene
- Charged Impurity Scattering in Graphene
- Colloquium: The transport properties of graphene: An introduction
- Defect scattering in graphene
- Effect of Disorder on Transport in Graphene
- On resonant scatterers as a factor limiting carrier mobility in graphene
- Quantum criticality and minimal conductivity in graphene with long-range disorder
- Disorder and Electronic Transport in Graphene
- Impurity effects in a two--dimensional system with Dirac spectrum
- Anderson Transition in Disordered Graphene
Cited by in corpus (12)
- Transport properties of 2D graphene containing structural defects
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- Direct observation of ordered configurations of hydrogen adatoms on graphene
- Electronic structure of vacancy resonant states in graphene: a critical review of the single vacancy case
- Vacancy Induced Splitting of Dirac Nodal Point in Graphene
- Effect of hydrogen adsorption on the quasiparticle spectra of graphene
- Effect of dilute impurities on short graphene Josephson junctions
- Mobility gap and quantum transport in functionalized graphene bilayer
- Electronic structure and transport in materials with flat bands: 2D materials and quasicrystals
- Impurity induced broadening of Drude peak in strained graphene
- Local analysis of a single impurity on a graphene Josephson Junction