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Article Dans Une Revue Science Advances Année : 2018

Quantum spin Hall insulator with a large bandgap, Dirac fermions, and bilayer graphene analog

Sergey S. Krishtopenko
  • Fonction : Auteur
Frederic Teppe

Résumé

The search for room temperature quantum spin Hall insulators (QSHIs) based on widely available materials and a controlled manufacturing process is one of the major challenges of today’s topological physics. We propose a new class of semiconductor systems based on multilayer broken-gap quantum wells, in which the QSHI gap reaches 60 meV and remains insensitive to temperature. Depending on their layer thicknesses and geometry, these novel structures also host a graphene-like phase and a bilayer graphene analog. Our theoretical results significantly extend the application potential of topological materials based on III–V semiconductors.
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Dates et versions

hal-01830515 , version 1 (31-05-2021)

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Paternité - Pas d'utilisation commerciale

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Sergey S. Krishtopenko, Frederic Teppe. Quantum spin Hall insulator with a large bandgap, Dirac fermions, and bilayer graphene analog. Science Advances , 2018, 4 (4), eaap7529. ⟨10.1126/sciadv.aap7529⟩. ⟨hal-01830515⟩
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