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Quasi one dimensional Dirac electrons on the surface of Ru2Sn3.
Gibson, Q D; Evtushinsky, D; Yaresko, A N; Zabolotnyy, V B; Ali, Mazhar N; Fuccillo, M K; Van den Brink, J; Büchner, B; Cava, R J; Borisenko, S V.
Afiliación
  • Gibson QD; Department of Chemistry, Princeton University, Princeton, New Jersey, 08544, USA.
  • Evtushinsky D; Leibniz Institute for Solid State and Materials Research, IFW Dresden, D-01069 Dresden, Germany.
  • Yaresko AN; Max-Planck-Institut für Festkörperforschung Heisenbergstraße 1, 70569 Stuttgart, Germany.
  • Zabolotnyy VB; Leibniz Institute for Solid State and Materials Research, IFW Dresden, D-01069 Dresden, Germany.
  • Ali MN; Department of Chemistry, Princeton University, Princeton, New Jersey, 08544, USA.
  • Fuccillo MK; Department of Chemistry, Princeton University, Princeton, New Jersey, 08544, USA.
  • Van den Brink J; Leibniz Institute for Solid State and Materials Research, IFW Dresden, D-01069 Dresden, Germany.
  • Büchner B; 1] Leibniz Institute for Solid State and Materials Research, IFW Dresden, D-01069 Dresden, Germany [2] Institute for Solid State Physics, Technical University Dresden, D-01171 Dresden, Germany.
  • Cava RJ; Department of Chemistry, Princeton University, Princeton, New Jersey, 08544, USA.
  • Borisenko SV; Leibniz Institute for Solid State and Materials Research, IFW Dresden, D-01069 Dresden, Germany.
Sci Rep ; 4: 5168, 2014 Jun 04.
Article en En | MEDLINE | ID: mdl-24893841
ABSTRACT
We present an ARPES study of the surface states of Ru2Sn3, a new type of a strong 3D topological insulator (TI). In contrast to currently known 3D TIs, which display two-dimensional Dirac cones with linear isotropic dispersions crossing through one point in the surface Brillouin Zone (SBZ), the surface states on Ru2Sn3 are highly anisotropic, displaying an almost flat dispersion along certain high-symmetry directions. This results in quasi-one dimensional (1D) Dirac electronic states throughout the SBZ that we argue are inherited from features in the bulk electronic structure of Ru2Sn3 where the bulk conduction bands are highly anisotropic. Unlike previous experimentally characterized TIs, the topological surface states of Ru2Sn3 are the result of a d-p band inversion rather than an s-p band inversion. The observed surface states are the topological equivalent to a single 2D Dirac cone at the surface Brillouin zone.

Texto completo: 1 Colección: 01-internacional Base de datos: MEDLINE Idioma: En Revista: Sci Rep Año: 2014 Tipo del documento: Article País de afiliación: Estados Unidos

Texto completo: 1 Colección: 01-internacional Base de datos: MEDLINE Idioma: En Revista: Sci Rep Año: 2014 Tipo del documento: Article País de afiliación: Estados Unidos