arXiv · 1601.04016
Staggered FeSe Monolayer on SrTiO$_3$ (110) surface
Abstract
We investigate the electronic and magnetic properties of FeSe monolayer on the anisotropic SrTiO$_3$ (110) surface. With compressive strain along $[1\bar{1}0]$ direction from the substrate, the monolayer FeSe possesses a staggered bipartite iron lattice with an height difference around 0.06Å~ along the out-plane direction. The staggering causes stronger magnetic frustration between the collinear and checkerboard antiferromagnetic orders, and the strain elongates one electron and two hole pockets along the strain direction and the remaining hole pocket along the orthogonal direction. The strain-induced band splitting at $Γ$ can also result in a band inversion to drive the system into a topologically nontrivial phase. The absence of strong superconducting suppression on the staggered lattice suggests that the superconducting pairings may be insensitive to the modification of interactions and hopping parameters between two Fe sublattices.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Xianxin Wu, Xia Dai, Yi Liang, Congcong Le, Heng Fan, Jiangping Hu. 2016-01-15. Staggered FeSe Monolayer on SrTiO$_3$ (110) surface. https://doi.org/10.1103/physrevb.94.045114
Cite the original work for its findings. Save a collection to share your selection of sources.