English

Two-dimensional Cs-vacancy superstructure in iron-based superconductor $Cs_{0.8}Fe_{1.6}Se_2$

Superconductivity 2015-05-12 v1

Abstract

Single crystal neutron diffraction is combined with synchrotron x-ray scattering to identify the different superlattice phases present in Cs0.8Fe1.6Se2Cs_{0.8}Fe_{1.6}Se_2. A combination of single crystal refinements and first principles modelling are used to provide structural solutions for the 5×5\sqrt{5}\times\sqrt{5} and 2×2\sqrt{2}\times\sqrt{2} superlattice phases. The 5×5\sqrt{5}\times\sqrt{5} superlattice structure is predominantly composed of ordered Fe vacancies and Fe distortions, whereas the 2×2\sqrt{2}\times\sqrt{2} superlattice is composed of ordered Cs vacancies. The Cs vacancies only order within the plane, causing Bragg rods in reciprocal space. By mapping x-ray diffraction measurements with narrow spatial resolution over the surface of the sample, the structural domain pattern was determined, consistent with the notion of a majority antiferromagnetic 5×5\sqrt{5}\times\sqrt{5} phase and a superconducting 2×2\sqrt{2}\times\sqrt{2} phase.

Keywords

Cite

@article{arxiv.1505.02527,
  title  = {Two-dimensional Cs-vacancy superstructure in iron-based superconductor $Cs_{0.8}Fe_{1.6}Se_2$},
  author = {D. G. Porter and E. Cemal and D. J. Voneshen and K. Refson and M. J. Gutmann and A. Bombardi and A. T. Boothroyd and A. Krzton-Maziopa and E. Pomjakushina and K. Conder and J. P. Goff},
  journal= {arXiv preprint arXiv:1505.02527},
  year   = {2015}
}

Comments

REVTex 4.1, 7 pages, 5 figures

R2 v1 2026-06-22T09:31:37.983Z