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Intrinsic granularity in nanocrystalline boron-doped diamond films measured by scanning tunneling microscopy

机译:通过扫描隧道显微镜测量纳米晶掺硼金刚石薄膜的本征粒度

摘要

We report on low-temperature scanning tunneling microscopy/spectroscopy experiments performed on superconducting boron-doped nanocrystalline diamond (NCD) thin films prepared by chemical-vapor deposition methods. The most representative sample reveals the observed superconducting gap (Δ) highly modulated over a length scale on the order of ∼30 nm, which is much shorter than the typical diamond grain size. The sample local and macroscopic behavior favors for the Δ modulation as being an intrinsic property of the NCD granules. On the other hand, Δ shows its temperature dependence [Δ(T)] consistent with the results obtained by Fominov and Feigel’man [Phys. Rev. B 63, 094518 (2001)], who studied theoretically the behavior of the superconducting gap of a BCS superconductor in contact with a normal layer by solving the one-dimensional Usadel equations on the superconducting side of the superconducting to normal interface.
机译:我们报告了对通过化学气相沉积法制备的超导掺硼纳米晶金刚石(NCD)薄膜进行的低温扫描隧道显微镜/光谱实验。最有代表性的样品揭示了所观察到的超导间隙(Δ)在约30 nm的长度范围内高度调制,比典型的金刚石晶粒尺寸短得多。样品的局部和宏观行为有利于Δ调制,因为它是NCD颗粒的固有特性。另一方面,Δ表示其温度依赖性[Δ(T)]与Fominov和Feigel’man [Phys。 Rev. B 63,094518(2001)],他从理论上研究了BCS超导体与正常层接触的超导间隙的行为,方法是在超导至正常界面的超导侧求解一维Usadel方程。

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