Strain effects on electronic structure and superconductivity in the iron telluride

The influence of tensile strain in the ab-plane on crystal and electronic structure of FeTe has been studied ab initio. In superconducting FeSe the Fermi surface nesting with a vector q - (0.5.0.5) x (2[pi]/a) is believed to be crucial for rising superconductivity mediated by spin-fluctuations. The...

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Veröffentlicht in:Intermetallics 2014-09, Vol.52, p.97-100
Hauptverfasser: Winiarski, M J, Samsel-Czekala, M, Ciechan, A
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Sprache:eng
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Zusammenfassung:The influence of tensile strain in the ab-plane on crystal and electronic structure of FeTe has been studied ab initio. In superconducting FeSe the Fermi surface nesting with a vector q - (0.5.0.5) x (2[pi]/a) is believed to be crucial for rising superconductivity mediated by spin-fluctuations. The results presented here indicate that tensile-strained FeTe also exhibits such conditions. Furthermore, the Fermi surface changes, related to the increase of the lattice parameter a of this telluride, are opposite to analogous effects reported for FeSe. Since a recently transition from the double-stripe to the single-stripe magnetic order in FeTe under tensile strain in the ab-plane is associated with an occurrence of superconductivity in corresponding thin films, these findings allow for drawing a consistent picture of superconductivity in FeSe sub(1-x)Te sub(x) systems, in general.
ISSN:0966-9795
DOI:10.1016/j.intermet.2014.03.018