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Highly and heavily boron doped diamond films

机译:高硼掺杂金刚石薄膜

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摘要

From the high ionization energy E_i=0.368 eV and high solid solubility >1.4x10~(22) cm~(-3) of boron in diamond, metallic conductivity is expected on the boron impurity band within the band gap (Mott model). On the contrary, the numerical models used to describe the superconductivity of metallic diamond mainly use the Bardeen model with a Fermi level within the valence band. Taking into account the decrease to zero of E_i through the high [B] range and the band gap narrowing through the high and heavy [B] ranges, both specific of the Bardeen model, we discuss the validity of the Mott and Bardeen models from the literature and cathodohiminescence and Raman experiments. They agree with the Mott rather than the Bardeen model. Several experiments independently show the coupling of boron related levels with the zone centre optical phonons which soften for heavy [B]. The Mott model might explain the similar range of the superconductivity temperature of homoepitaxial and polycrystalline films from the similarity of their boron impurity band.
机译:由于高电离能E_i = 0.368 eV和硼在金刚石中的高固溶度> 1.4x10〜(22)cm〜(-3),在带隙内的硼杂质带上具有金属导电性(Mott模型)。相反,用于描述金属金刚石超导性的数值模型主要使用价带内费米能级的Bardeen模型。考虑到E_i在高[B]范围内减小到零以及在高和重[B]范围内带隙变窄,这两个都是Bardeen模型的特有问题,因此我们讨论了Mott和Bardeen模型的有效性。文献以及阴极发光和拉曼实验。他们同意莫特而不是巴丁模式。几个实验独立地显示了硼相关能级与区域中心光学声子的耦合,这些声子会变软[B]。莫特模型可能从硼杂质带的相似性解释了同质外延膜和多晶膜的超导温度的相似范围。

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