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Superconductivity in diamond

机译:金刚石中的超导

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We survey methods of synthesis of boron doped diamond with high pressure-high temperature techniques. New route is proposed for synthesis of relatively large heavily boron doped diamond single crystals, which exhibit superconductivity. Superconducting boron-doped diamond samples were synthesized with isotopes of ~(10)B, ~(11)B, ~(13)C and ~(12)C We claim the presence of a carbon isotope effect on the superconducting transition temperature, which supports the "diamond-carbon"-related nature of superconductivity and the importance of the electron-phonon interaction as the mechanism of superconductivity in diamond. Isotope substitution permits us to relate almost all bands in the Raman spectra of heavily boron-doped diamond to the vibrations of carbon atoms. The 500 cm~(-1) Raman band shifts with either carbon or boron isotope substitution and may be associated with vibrations of paired or clustered boron.
机译:我们调查了用高压-高温技术合成掺硼金刚石的方法。提出了新的路线来合成较大的重硼掺杂的金刚石单晶,该单晶具有超导性。用〜(10)B,〜(11)B,〜(13)C和〜(12)C的同位素合成了超导掺硼金刚石样品。我们声称存在碳同位素对超导转变温度的影响,支持超导的“金刚石-碳”相关性质,以及电子-声子相互作用作为金刚石超导机理的重要性。同位素取代使我们能够将重掺杂硼的钻石的拉曼光谱中的几乎所有谱带都与碳原子的振动相关联。 500 cm〜(-1)拉曼能带随着碳或硼同位素的取代而移动,可能与成对或成簇的硼的振动有关。

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