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首页> 外文期刊>Applied Surface Science >Migdal-Eliashberg theory of multi-band high-temperature superconductivity in field-effect-doped hydrogenated (111) diamond
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Migdal-Eliashberg theory of multi-band high-temperature superconductivity in field-effect-doped hydrogenated (111) diamond

机译:MIGDAL-ELIASHBERG在场效应掺杂氢化(111)金刚石中的多频高温超导性理论

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摘要

We perform single- and multi-band Migdal-Eliashberg (ME) calculations with parameters exctracted from density functional theory (DFT) simulations to study superconductivity in the electric-field-induced 2-dimensional hole gas at the hydrogenated (111) diamond surface. We show that according to the Eliashberg theory it is possible to induce a high-T-c superconducting phase when the system is field-effect doped to a surface hole concentration of 6 x 10(14) cm(-2), where the Fermi level crosses three valence bands. Starting from the band-resolved electron-phonon spectral functions alpha(2)Fjj (omega) computed ab initio, we iteratively solve the self-consistent isotropic Migdal-Eliashberg equations, in both the single-band and the multi-band formulations, in the approximation of a constant density of states at the Fermi level. In the single-band formulation, we find T-c approximate to 40 K, which is enhanced between 4% and 8% when the multi-band nature of the system is taken into account. We also compute the multi-band-sensitive quasiparticle density of states to act as a guideline for future experimental works.
机译:我们对从密度泛函理论(DFT)模拟中的参数进行单一和多频段migdal-ELIASHBERG(ME)计算,以研究氢化(111)金刚石表面的电场诱导的二维空穴气体中的超导性。我们表明,根据ELIASHBERG理论,当系统是掺杂的场孔浓度为6×10(14 )cm(-2)的场孔浓度时,可以诱导高Tc超导阶段,其中费米水平交叉三个价乐队。从带状的电子 - 声子谱函数α(2)FJJ(OMEGA)计算的AB Initio,我们迭代地解决单带和多频段配方中的自我一致的各向同性MIGDAL-ELIASHBERG方程费米水平恒定密度的常数密度。在单频带配方中,我们发现T-C近似为40 k,当考虑系统的多频带性质时,该T-C近似为40 k,在4%和8%之间。我们还计算各国的多带敏感的Quasiparticle密度,以作为未来实验工作的指导。

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