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April 14, 2006Science5,535 citations

Electronic Confinement and Coherence in Patterned Epitaxial Graphene

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CBClaire BergerZSZhimin SongXLXuebin Li

Key Points

  • This research aims to explore the transport properties and electronic coherence in patterned epitaxial graphene.
  • Epitaxial graphite was grown on silicon carbide using vacuum graphitization.
  • Standard nanolithography methods were applied for material patterning.
  • Transport properties were measured to assess quantum confinement and charge carrier behavior.
  • Patterned structures exhibit quantum confinement of electrons with phase coherence lengths exceeding 1 micrometer at 4 kelvin.
  • Mobility of the material exceeds 2.5 square meters per volt-second.
  • The transport properties reveal the Dirac nature of the charge carriers.

Abstract

Ultrathin epitaxial graphite was grown on single-crystal silicon carbide by vacuum graphitization. The material can be patterned using standard nanolithography methods. The transport properties, which are closely related to those of carbon nanotubes, are dominated by the single epitaxial graphene layer at the silicon carbide interface and reveal the Dirac nature of the charge carriers. Patterned structures show quantum confinement of electrons and phase coherence lengths beyond 1 micrometer at 4 kelvin, with mobilities exceeding 2.5 square meters per volt-second. All-graphene electronically coherent devices and device architectures are envisaged.

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Cite This Study

Berger et al. (2006) studied this question.

synapsesocial.com/papers/69d7b67e56b4d8a54e48f642https://doi.org/10.1126/science.1125925
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