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The theoretical analysis of electronic thermal properties of the interfaces between multiband superconductors and a normal metal

机译:多频带超导体与常规金属界面电子热性能的理论分析

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Investigations of the electronic thermal properties of the interfaces between a normal metal and high-temperature superconductors are important for correct design of modern low-temperature electronic refrigerators and bolometers. Multiband superconductivity, recently discovered in ferropnictides and in magnesium diboride, is the suitable choice due to isotropic order parameter in it, in contrast with strongly anisotropic d-wave superconductivity in high-T. cuprates, which is destructive for electronic refrigeration and bolometric applications. Moreover, recent calculations of Andreev spectra and subgup bound states in ferropnictides, taking into account coherent multiband interference effects in s_± signreversal order parameter model, predict possible suppression of Andreev reflection for clean boundaries between ferropnictides and a normal metal. This Andreev reflection suppression can improve electronic refrigerator quality. Up to now there was no calculation of electronic thermal properties of the interfaces between a normal metal and novel multiband superconductors. In this paper we calculate the thermal flux and electronic thermal conductivity of the boundary between normal metal and novel multiband superconductors. In this calculations both s_(++) and s_± signreversal order parameter models for multiband superconductor is used, taking into account coherent multiband interference effect.
机译:正常金属和高温超导体之间的界面的电子热性能的研究对于正确的现代低温电子冰箱和钻孔符来说是重要的。多频带超导性,最近在铁甲基米德和二硼烷烃中发现,是由于其上同位数参数引起的合适选择,相反,具有高于的强烈各向异性的D波超导性。铜酸盐,这是对电子制冷和弓旋型应用的破坏性。此外,在S_±SignReversal阶参数模型中考虑了合成的多频带干扰效应的andreev光谱和副谱染色状态的近期计算,预测了铁丙铁和正常金属之间的清洁边界的可能抑制。这种Andreev反射抑制可以提高电子冰箱质量。到目前为止,没有计算正常金属和新型多频带超导体之间的界面的电子热性质。在本文中,我们计算了正常金属和新型多频带超导体之间的边界的热通量和电子热导率。在此计算中,使用多频带超级导体的S _(++)和S_±SignReversal订单参数模型,考虑到相干的多频带干扰效果。

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