English

Surface and Bulk Electronic Structure of the Strongly Correlated System SmB$_{6}$ and Implications for a Topological Kondo Insulator

Strongly Correlated Electrons 2013-09-11 v1 Materials Science

Abstract

Recent theoretical calculations and experimental results suggest that the strongly correlated material SmB6_{6} may be a realization of a topological Kondo insulator. We have performed an angle-resolved photoemission spectroscopy study on SmB6_{6} in order to elucidate elements of the electronic structure relevant to the possible occurrence of a topological Kondo insulator state. The obtained electronic structure in the whole three-dimensional momentum space reveals one electron-like 5d bulk band centred at the X point of the bulk Brillouin zone that is hybridized with strongly correlated f electrons, as well as the opening of a Kondo bandgap (ΔB\Delta_B \sim 20 meV) at low temperature. In addition, we observe electron-like bands forming three Fermi surfaces at the center Γˉ\bar{\Gamma} point and boundary Xˉ\bar{X} point of the surface Brillouin zone. These bands are not expected from calculations of the bulk electronic structure, and their observed dispersion characteristics are consistent with surface states. Our results suggest that the unusual low-temperature transport behavior of SmB6_{6} is likely to be related to the pronounced surface states sitting inside the band hybridisation gap and/or the presence of a topological Kondo insulating state.

Keywords

Cite

@article{arxiv.1306.3678,
  title  = {Surface and Bulk Electronic Structure of the Strongly Correlated System SmB$_{6}$ and Implications for a Topological Kondo Insulator},
  author = {N. Xu and X. Shi and P. K. Biswas and C. E. Matt and R. S. Dhaka and Y. Huang and N. C. Plumb and M. Radovic and J. H. Dil and E. Pomjakushina and A. Amato and Z. Salman and D. McK. Paul and J. Mesot and H. Ding and M. Shi},
  journal= {arXiv preprint arXiv:1306.3678},
  year   = {2013}
}

Comments

5 pages, 4 figures