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10.1038/srep44024

http://scihub22266oqcxt.onion/10.1038/srep44024
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C5339780!5339780!28266654
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suck abstract from ncbi

pmid28266654      Sci+Rep 2017 ; 7 (ä): ä
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  • Superconducting gap structure of FeSe #MMPMID28266654
  • Jiao L; Huang CL; Rößler S; Koz C; Rößler UK; Schwarz U; Wirth S
  • Sci Rep 2017[]; 7 (ä): ä PMID28266654show ga
  • The microscopic mechanism governing the zero-resistance flow of current in some iron-based, high-temperature superconducting materials is not well understood up to now. A central issue concerning the investigation of these materials is their superconducting gap symmetry and structure. Here we present a combined study of low-temperature specific heat and scanning tunnelling microscopy measurements on single crystalline FeSe. The results reveal the existence of at least two superconducting gaps which can be represented by a phenomenological two-band model. The analysis of the specific heat suggests significant anisotropy in the gap magnitude with deep gap minima. The tunneling spectra display an overall ?U?-shaped gap close to the Fermi level away as well as on top of twin boundaries. These results are compatible with the anisotropic nodeless models describing superconductivity in FeSe.
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