English

Spin textures on general surfaces of the correlated topological insulator SmB6

Strongly Correlated Electrons 2016-05-12 v1

Abstract

Employing the kp\mathbf{k}\cdot\mathbf{p} expansion for a family of tight-binding models for SmB6_6, we analytically compute topological surface states on a generic (lmn)(lmn) surface. We show how the Dirac-cone spin structure depends on model ingredients and on the angle θ\theta between the surface normal and the main crystal axes. We apply the general theory to (001)(001), (110)(110), (111)(111), and (210)(210) surfaces, for which we provide concrete predictions for the spin pattern of surface states which we also compare with tight-binding results. As shown in previous work, the spin pattern on a (001)(001) surface can be related to the value of mirror Chern numbers, and we explore the possibility of topological phase transitions between states with different mirror Chern numbers and the associated change of the spin structure of surface states. Such transitions may be accessed by varying either the hybridization term in the Hamiltonian or the crystal-field splitting of the low-energy ff multiplets, and we compute corresponding phase diagrams.

Keywords

Cite

@article{arxiv.1602.00852,
  title  = {Spin textures on general surfaces of the correlated topological insulator SmB6},
  author = {Pier Paolo Baruselli and Matthias Vojta},
  journal= {arXiv preprint arXiv:1602.00852},
  year   = {2016}
}