Observation of dirac holes and electrons in a topological insulator

We show that in the new topological-insulator compound Bi(1.5)Sb(0.5)Te(1.7)Se(1.3) one can achieve a surfaced-dominated transport where the surface channel contributes up to 70% of the total conductance. Furthermore, it was found that in this material the transport properties sharply reflect the ti...

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Veröffentlicht in:Physical review letters 2011-06, Vol.107 (1), p.016801-016801, Article 016801
Hauptverfasser: Taskin, A A, Ren, Zhi, Sasaki, Satoshi, Segawa, Kouji, Ando, Yoichi
Format: Artikel
Sprache:eng
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Zusammenfassung:We show that in the new topological-insulator compound Bi(1.5)Sb(0.5)Te(1.7)Se(1.3) one can achieve a surfaced-dominated transport where the surface channel contributes up to 70% of the total conductance. Furthermore, it was found that in this material the transport properties sharply reflect the time dependence of the surface chemical potential, presenting a sign change in the Hall coefficient with time. We demonstrate that such an evolution makes us observe both Dirac holes and electrons on the surface, which allows us to reconstruct the surface band dispersion across the Dirac point.
ISSN:0031-9007
1079-7114
DOI:10.1103/physrevlett.107.016801