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Transition-Metal Substitutions in Iron Chalcogenides

Superconductivity 2015-06-23 v1

Abstract

The abab-plane resistivity and Hall effect are studied in Fe1y_{1-y}My_yTe0.65_{0.65}Se0.35_{0.35} single crystals doped with two transition metal elements, M = Co or Ni, over a wide doping range, 0y0.20 \leq y \leq 0.2. The superconducting transition temperature, TcT_{c}, reaches zero for Co at y0.14y \simeq 0.14 and for Ni at y0.032y \simeq 0.032, while the resistivity at the TcT_{c} onset increases weakly with Co doping, and strongly with Ni doping. The Hall coefficient RHR_H, positive for yy = 0, remains so at high temperatures for all yy, while it changes sign to negative at low TT for y>0.135y > 0.135 (Co) and y>0.06y > 0.06 (Ni). The analysis based on a two band model suggests that at high TT residual hole pockets survive the doping, but holes get localized upon the lowering of TT, so that the effect of the electron doping on the transport becomes evident. The suppression of the TcT_c by Co impurity is related to electron doping, while in case of the Ni impurity strong electron localization most likely contributes to fast decrease of the TcT_c.

Keywords

Cite

@article{arxiv.1412.3599,
  title  = {Transition-Metal Substitutions in Iron Chalcogenides},
  author = {V. L. Bezusyy and D. J. Gawryluk and A. Malinowski and Marta Z. Cieplak},
  journal= {arXiv preprint arXiv:1412.3599},
  year   = {2015}
}