Please use this identifier to cite or link to this item: http://repositorio.ufc.br/handle/riufc/49077
Type: Artigo de Periódico
Title: Multiband tunneling in trilayer graphene
Authors: Duppen, Ben Van
Sena, Silvia Helena Roberto de
Peeters, Francois Maria Leopold
Keywords: Grafeno;Equação de Dirac;Spin;Orbitais atômicos
Issue Date: 2013
Publisher: Physical Review B
Citation: VAN DUPPEN, B.; SENA, S. H. R.; PEETERS, F. M. Multiband tunneling in trilayer graphene. Physical Review B, v. 87, n. 19, p. 1-10, 2013.
Abstract: The electronic tunneling properties of the two stable forms of trilayer graphene (TLG), rhombohedral ABC and Bernal ABA, are examined for p-n and p-n-p junctions as realized by using a single gate (SG) or a double gate (DG). For the rhombohedral form, due to the chirality of the electrons, the Klein paradox is found at normal incidence for SG devices, while at high-energy interband scattering between additional propagation modes can occur. The electrons in Bernal ABA TLG can have a monolayer- or bilayer-like character when incident on a SG device. Using a DG, however, both propagation modes will couple by breaking the mirror symmetry of the system, which induces intermode scattering and resonances that depend on the width of the DG p-n-p junction. For ABC TLG the DG opens up a band gap which suppresses Klein tunneling. The DG induces also an unexpected asymmetry in the tunneling angle for single-valley electrons.
URI: http://www.repositorio.ufc.br/handle/riufc/49077
ISSN: 1098-0121
Access Rights: Acesso Aberto
Appears in Collections:DFI - Artigos publicados em revista científica

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