English

Saddle point singularity and topological phase diagram in a tunable topological crystalline insulator (TCI)

Mesoscale and Nanoscale Physics 2014-03-07 v1

Abstract

A topological crystalline insulator (TCI) is a new phase of topological matter, which is predicted to exhibit distinct topological quantum phenomena, since space group symmetries replace the role of time-reversal symmetry in the much-studied Z2_2 topological insulators. Utilizing high-resolution angle-resolved photoemission spectroscopy (ARPES), we reveal the momentum space nature of interconnectivity of the Fermi surface pockets leading to a saddle point singularity within the topological surface state alone in the TCI Pb0.7_{0.7}Sn0.3_{0.3}Se. Moreover, we show that the measured momentum-integrated density of states exhibits pronounced peaks at the saddle point energies, demonstrating the van Hove singularities (VHSs) in the topological surface states, whose surface chemical potential, as we show, can be tuned via surface chemical gating, providing access to the topological correlated physics on the surface. Our experimental data reveal a delicate relationship among lattice constant, band gap and spin-orbit coupling strength associated with the topological phase transition in Pb1x_{1-x}Snx_{x}Se. Furthermore, we explore the robustness of the TCI phase with VHS in Pb1x_{1-x}Snx_{x}Se, which shows a variety of distinct topological phase transitions driven by either thermal instability or broken crystalline symmetry, and thus revealing a rich topological phase diagram connectivity in Pb1x_{1-x}Snx_{x}Se for the first time.

Keywords

Cite

@article{arxiv.1403.1560,
  title  = {Saddle point singularity and topological phase diagram in a tunable topological crystalline insulator (TCI)},
  author = {Madhab Neupane and Su-Yang Xu and R. Sankar and Q. Gibson and Y. J. Wang and N. Alidoust and G. Bian and Chang Liu and I. Belopolski and Y. Ohtsubo and A. Taleb-Ibrahimi and S. Basak and W. -F. Tsai and H. Lin and R. J. Cava and A. Bansil and F. C. Chou and M. Z. Hasan},
  journal= {arXiv preprint arXiv:1403.1560},
  year   = {2014}
}

Comments

18 pages, 4 figres