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Gap opening and tuning in single-layer graphene with combined electric and magnetic field modulation

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Abstract

The energy band structure of single-layer graphene under one-dimensional electric and magnetic field modulation is theoretically investigated. The criterion for bandgap opening at the Dirac point is analytically derived with a two-fold degeneracy second-order perturbation method. It is shown that a direct or an indirect bandgap semiconductor could be realized in a single-layer graphene under some specific configurations of the electric and magnetic field arrangement. Due to the bandgap generated in the single-layer graphene, the Klein tunneling observed in pristine graphene is completely suppressed.

Original languageEnglish
Article number047302
JournalChinese Physics B
Volume20
Issue number4
DOIs
StatePublished - Apr 2011

Keywords

  • electric and magnetic superlattice
  • gap opening at Dirac point
  • second-order perturbation
  • single-layer graphene

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