English

Magnetic Properties Controlled by Interstitial or Interlayer Cations in Iron Chalcogenides

Superconductivity 2016-03-17 v1

Abstract

By applying density functional theory calculations to iron chalcogenides, we find that magnetic order in Fe1+y_{1+y}Te and magnetic instability at (π,π)(\pi,\pi) in Ky_yFe2_2Se2_2 are controlled by interstitial and interlayer cations, respectively. While in Fe1+y_{1+y}Te, magnetic phase transitions occur among collinear, exotic bicollinear and plaquette-ordered antiferronmagnetic states when the height of interstitial irons measured from iron plane or the concentration of interstitial irons is varied, the magnetic instability at (π,π)(\pi,\pi) which is believed to be responsible for the Cooper pairing in iron pnictides is significantly enhanced when yy is much smaller than 11 in Ky_yFe2_2Se2_2. Our results indicate that, similar to iron pnictides, itinerant electrons play important roles in iron chalcogenides, even though the fluctuating local moments become larger.

Keywords

Cite

@article{arxiv.1603.04952,
  title  = {Magnetic Properties Controlled by Interstitial or Interlayer Cations in Iron Chalcogenides},
  author = {Shan-Chang Tang and Ming-Cui Ding and Yu-Zhong Zhang},
  journal= {arXiv preprint arXiv:1603.04952},
  year   = {2016}
}

Comments

8 pages, 5 figures

R2 v1 2026-06-22T13:11:58.512Z