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首页> 外文期刊>Journal of Superconductivity and Novel Magnetism >Superconductivity and the Van Hove Scenario
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Superconductivity and the Van Hove Scenario

机译:超导和范霍夫情景

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We give a review of the role of the Van Hove singularities in superconductivity. Van Hove singularities (VHs) are a general feature of low-dimensional systems. They appear as divergences of the electronic density of states (DOS). Jacques Friedel and Jacques Labbé were the first to propose this scenario for the A15 compounds. In NbTi, for example, Nb chains give a quasi-1D electronic structure for the d-band, leading to a VHs. They developed this model and explained the high T C and the many structural transformations occurring in these compounds. This model was later applied by Jacques Labbé and Julien Bok to the cuprates and developed by Jacqueline Bouvier and Julien Bok. The high T C superconductors cuprates are quasi-bidimensional (2D) and thus lead to the existence of Van Hove singularities in the band structure. The presence of VHs near the Fermi level in the cuprates is now well established. In this context we show that many physical properties of these materials can be explained, in particular the high critical temperature T C, the anomalous isotope effect, the superconducting gap and its anisotropy, and the marginal Fermi liquid properties, they studied these properties in the optimum and overdoped regime. These compounds present a topological transition for a critical hole doping p≈0.21 hole per CuO2 plane.
机译:我们回顾了Van Hove奇点在超导中的作用。 Van Hove奇异点(VH)是低维系统的一般特征。它们表现为状态电子密度(DOS)的差异。雅克·弗里德尔(Jacques Friedel)和雅克·拉贝(JacquesLabbé)率先提出了针对A15化合物的这种方案。例如,在NbTi中,Nb链为d波段提供准1D电子结构,从而导致VHs。他们开发了该模型并解释了这些化合物中的高T C 和许多结构转变。后来,雅克·拉贝(JacquesLabbé)和朱利安·博克(Julien Bok)将这种模型应用到了杯装咖啡上,杰奎琳·鲍维耶(Jacqueline Bouvier)和朱利安·博克(Julien Bok)开发了该模型。高T C 超导体铜酸盐是准二维(2D),因此导致能带结构中存在Van Hove奇异性。现在已经很好地确定了铜酸盐中费米能级附近的VH的存在。在这种情况下,我们表明可以解释这些材料的许多物理性质,特别是高临界温度TC ,异常同位素效应,超导间隙及其各向异性以及边缘费米液体性质,他们对此进行了研究。在最佳和超载状态下的性质。这些化合物对每个CuO2 平面的临界空穴掺杂p≈0.21孔呈现拓扑转变。

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