Weak superconductivity in the surface layer of a bulk single-crystal boron-doped diamond

We have grown and investigated bulk single-crystal heavily boron-doped diamonds possessing superconductivity with . Only the surface layer with the thickness less than showed the degenerate semiconductor behavior with transition to the superconducting state, while the bulk of the crystal was a typic...

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Veröffentlicht in:Europhysics letters 2014-12, Vol.108 (6), p.67014-p1-67014-p5
Hauptverfasser: Blank, Vladimir, Buga, Sergei, Bormashov, Vitaly, Denisov, Victor, Kirichenko, Alexei, Kulbachinskii, Vladimir, Kuznetsov, Michail, Kytin, Vladimir, Kytin, Gennadii, Tarelkin, Sergei, Terentiev, Sergei
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Sprache:eng
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Zusammenfassung:We have grown and investigated bulk single-crystal heavily boron-doped diamonds possessing superconductivity with . Only the surface layer with the thickness less than showed the degenerate semiconductor behavior with transition to the superconducting state, while the bulk of the crystal was a typical doped semiconductor. The morphology of the surface layer is dendritic polycrystalline with an average boron content of 2.5-2.9 at.%. The typical Josephson junction current-voltage characteristic was observed. The degenerate semiconductor-superconductor transition as in single-crystal high-temperature superconductors and the structural data analysis of the surface layer indicate the two-dimensional character of superconductivity, and the actual superconducting structure is a set of few-nanometer thick boron carbide layers embedded in a diamond structure.
ISSN:0295-5075
1286-4854
DOI:10.1209/0295-5075/108/67014