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Direct mapping of the spin-filtered surface bands of a three-dimensional quantum spin Hall insulator

Materials Science 2015-05-13 v1 Mesoscale and Nanoscale Physics

Abstract

Spin-polarized band structure of the three-dimensional quantum spin Hall insulator Bi1xSbx\rm Bi_{1-x}Sb_{x} (x=0.12-0.13) was fully elucidated by spin-polarized angle-resolved photoemission spectroscopy using a high-yield spin polarimeter equipped with a high-resolution electron spectrometer. Between the two time-reversal-invariant points, Γˉ\bar{\varGamma} and Mˉ\bar{M}, of the (111) surface Brillouin zone, a spin-up band (Σ3\Sigma_3 band) was found to cross the Fermi energy only once, providing unambiguous evidence for the strong topological insulator phase. The observed spin-polarized band dispersions determine the "mirror chirality" to be -1, which agrees with the theoretical prediction based on first-principles calculations.

Keywords

Cite

@article{arxiv.0902.2251,
  title  = {Direct mapping of the spin-filtered surface bands of a three-dimensional quantum spin Hall insulator},
  author = {Akinori Nishide and Alexey A. Taskin and Yasuo Takeichi and Taichi Okuda and Akito Kakizaki and Toru Hirahara and Kan Nakatsuji and Fumio Komori and Yoichi Ando and Iwao Matsuda},
  journal= {arXiv preprint arXiv:0902.2251},
  year   = {2015}
}