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10.1038/srep10435

http://scihub22266oqcxt.onion/10.1038/srep10435
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C4444835!4444835!26014056
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suck abstract from ncbi


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pmid26014056      Sci+Rep 2015 ; 5 (ä): ä
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  • Topological nature and the multiple Dirac cones hidden in Bismuth high-Tc superconductors #MMPMID26014056
  • Li G; Yan B; Thomale R; Hanke W
  • Sci Rep 2015[]; 5 (ä): ä PMID26014056show ga
  • Recent theoretical studies employing density-functional theory have predicted BaBiO3 (when doped with electrons) and YBiO3 to become a topological insulator (TI) with a large topological gap (~0.7?eV). This, together with the natural stability against surface oxidation, makes the Bismuth-Oxide family of special interest for possible applications in quantum information and spintronics. The central question, we study here, is whether the hole-doped Bismuth Oxides, i.e. Ba1-xKxBiO3 and BaPb1-xBixO3, which are ?high-Tc? bulk superconducting near 30?K, additionally display in the further vicinity of their Fermi energy EF a topological gap with a Dirac-type of topological surface state. Our electronic structure calculations predict the K-doped family to emerge as a TI, with a topological gap above EF. Thus, these compounds can become superconductors with hole-doping and potential TIs with additional electron doping. Furthermore, we predict the Bismuth-Oxide family to contain an additional Dirac cone below EF for further hole doping, which manifests these systems to be candidates for both electron- and hole-doped topological insulators.
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