English

Surface band structure of $\text{Bi}_{1-x}\text{Sb}_{x}$(111)

Mesoscale and Nanoscale Physics 2015-04-15 v2

Abstract

Theoretical and experimental studies agree that Bi1xSbx\text{Bi}_{1-x}\text{Sb}_{x} (0.07x0.210.07 \leq x \leq 0.21) to be a three-dimensional topological insulator. However, there is still a debate on the corresponding Bi1xSbx\text{Bi}_{1-x}\text{Sb}_{x}(111) surface band structure. While three spin polarized bands have been claimed experimentally, theoretically, only two surface bands appear, with the third band being attributed to surface imperfections. Here, we address this controversy using angle-resolved photoemission spectroscopy (ARPES) on Bi1xSbx\text{Bi}_{1-x}\text{Sb}_{x} films. To minimize surface imperfections, we have optimized the sample growth recipe. We have measured the evolution of the surface band structure of Bi1xSbx\text{Bi}_{1-x}\text{Sb}_{x} with xx increasing gradually from x=0x = 0 to x=0.6x = 0.6. Our ARPES data show better agreement with the theoretical calculations, where the system is topologically non-trivial with two surface bands.

Keywords

Cite

@article{arxiv.1412.4596,
  title  = {Surface band structure of $\text{Bi}_{1-x}\text{Sb}_{x}$(111)},
  author = {Hadj M. Benia and Carola Straßer and Klaus Kern and Christian R. Ast},
  journal= {arXiv preprint arXiv:1412.4596},
  year   = {2015}
}