Large gap electron-hole superfluidity and shape resonances in coupled graphene nanoribbons

HIGHLIGHTS

  • who: M. Zarenia from the DepartmentUniversity of have published the research work: Large gap electron-hole superfluidity and shape resonances in coupled graphene nanoribbons, in the Journal: Scientific Reports Scientific Reports
  • what: The authors focus on armchair-edge terminated nanoribbons since (i) their subbands are parabolic around their minima (Fig 1(a)), (ii) there is a sizeable semiconductor-like energy gap between the conduction and valence bands, and_(iii) the valley degeneracy of monolayer graphene is lifted. The authors neglect screening in the calculations for the following reasons. The device configurations the authors propose are . . .

     

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