English

Interband absorption edge in topological insulators Bi$_2$(Te$_{1-x}$Se$_x$)$_3$

Materials Science 2018-02-05 v1

Abstract

We have investigated the optical properties of thin films of topological insulators Bi2_{2}Te3_{3}, Bi2_{2}Se3_{3} and their alloys Bi2_2(Te1x_{1-x}Sex_x)3_3 on BaF2_{2} substrates by a combination of infrared ellipsometry and reflectivity in the energy range from 0.06 to 6.5 eV. For the onset of interband absorption in Bi2_2Se3_3, after the correction for the Burstein-Moss effect, we find the value of direct bandgap of 215±10215\pm10 meV at 10 K. Our data supports the picture that Bi2_2Se3_3 has a direct band gap located at the Γ\Gamma point in the Brillouin zone and that the valence band reaches up to the Dirac point and has the shape of a downward oriented paraboloid, i.e. without a camel-back structure. In Bi2_2Te3_3, the onset of strong direct interband absorption at 10 K is at a similar energy of about 200 meV, with a weaker additional feature at about 170 meV. Our data support the recent GW band structure calculations suggesting that the direct interband transition does not occur at the Γ\Gamma point but near the Z-F line of the Brillouin zone. In the Bi2_2(Te1x_{1-x}Sex_x)3_3 alloy, the energy of the onset of direct interband transitions exhibits a maximum near x=0.3x=0.3 (i.e. the composition of Bi2_2Te2_2Se), suggesting that the crossover of the direct interband transitions between the two points in the Brillouin zone occurs close to this composition.

Keywords

Cite

@article{arxiv.1711.08177,
  title  = {Interband absorption edge in topological insulators Bi$_2$(Te$_{1-x}$Se$_x$)$_3$},
  author = {A. Dubroka and O. Caha and M. Hronček and P. Friš and M. Orlita and V. Holý and H. Steiner and G. Bauer and G. Springholz and J. Humlíček},
  journal= {arXiv preprint arXiv:1711.08177},
  year   = {2018}
}

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