English

Identification of prototypical Brinkman-Rice Mott physics in a class of iron chalcogenides superconductors

Superconductivity 2016-02-24 v3

Abstract

The 122^{*} series of iron-chalcogenide superconductors, for example Kx_xFe2y_{2-y}Se2_{2}, only possesses electron Fermi pockets. Their distinctive electronic structure challenges the picture built upon iron pnictide superconductors, where both electron and hole Fermi pockets coexist. However, partly due to the intrinsic phase separation in this family of compounds, many aspects of their behavior remain elusive. In particular, the evolution of the 122^{*} series of iron-chalcogenides with chemical substitution still lacks a microscopic and unified interpretation. Using angle-resolved photoemission spectroscopy, we studied a major fraction of 122^{*} iron-chalcogenides, including the isovalently `doped' Kx_xFe2y_{2-y}Se2z_{2-z}Sz_z, Rbx_xFe2y_{2-y}Se2z_{2-z}Tez_z and (Tl,K)x_xFe2y_{2-y}Se2z_{2-z}Sz_z. We found that the bandwidths of the low energy Fe \textit{3d} bands in these materials depend on doping; and more crucially, as the bandwidth decreases, the ground state evolves from a metal to a superconductor, and eventually to an insulator, yet the Fermi surface in the metallic phases is unaffected by the isovalent dopants. Moreover, the correlation-driven insulator found here with small band filling may be a novel insulating phase. Our study shows that almost all the known 122^{*}-series iron chalcogenides can be understood {\it via} one unifying phase diagram which implies that moderate correlation strength is beneficial for the superconductivity.

Keywords

Cite

@article{arxiv.1506.04018,
  title  = {Identification of prototypical Brinkman-Rice Mott physics in a class of iron chalcogenides superconductors},
  author = {X. H. Niu and S. D. Chen and J. Jiang and Z. R. Ye and T. L. Yu and D. F. Xu and M. Xu and Y. Feng and Y. J. Yan and B. P. Xie and J. Zhao and D. C. Gu and L. L. Sun and Qianhui Mao and Hangdong Wang and Minghu Fang and C. J. Zhang and J. P. Hu and Z. Sun and D. L. Feng},
  journal= {arXiv preprint arXiv:1506.04018},
  year   = {2016}
}

Comments

19 pages, 5 figures