4.6 Article

Quantum spin Hall effect in IV-VI topological crystalline insulators

期刊

NEW JOURNAL OF PHYSICS
卷 17, 期 -, 页码 -

出版社

IOP PUBLISHING LTD
DOI: 10.1088/1367-2630/17/6/063041

关键词

topological insulators; quantum spin hall effect; thin films; band structure; surface states

资金

  1. Polish National Science Center (NCN) [2011/03/B/ST3/02659, 2013/11/B/ST3/03934]
  2. Weizmann Institute Visiting Scientist Program
  3. Wroclaw Centre for Networking and Supercomputing [330]
  4. Interdisciplinary Centre for Mathematical and Computational Modelling (ICM) of the University of Warsaw [G51-18]

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We envision that the quantum spin Hall effect should be observed in (111)-oriented thin films of SnSe and SnTe topological crystalline insulators. Using a tight-binding approach supported by first-principles calculations of the band structures, we demonstrate that in these films the energy gaps in the two-dimensional band spectrum depend in an oscillatory fashion on the layer thickness. These results as well as the calculated topological invariant indexes and edge state spin polarizations show that for films similar to 20-40 monolayers thick a two-dimensional topological insulator phase appears. In this range of thicknesses in both SnSe and SnTe, (111)-oriented films edge states with Dirac cones with opposite spin polarization in their two branches are obtained. While in the SnTe layers a single Dirac cone appears at the projection of the (Gamma) over bar point of the two-dimensional Brillouin zone, in the SnSe (111)-oriented layers three Dirac cones at (M) over bar points projections are predicted.

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