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首页> 外文期刊>Physical review letters >Proximity Effect And Its Enhancement By Ferromagnetism In High-temperature Superconductor-ferromagnet Structures
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Proximity Effect And Its Enhancement By Ferromagnetism In High-temperature Superconductor-ferromagnet Structures

机译:高温超导体-铁磁体结构中的铁磁性的邻近效应及其增强

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摘要

We consider a bilayer consisting of a d-wave layered superconductor and diffusive ferromagnet with a domain wall (DW). The c axis in the superconductor and DW in the ferromagnet are assumed to be perpendicular to the interface. We demonstrate that in such a heterostructure the inhomogeneous exchange field enhances the proximity effect. It is shown that, whereas in the absence of the exchange field the d-wave condensate decays in the normal metal on the mean free path /, the superconductivity penetrates the ferromagnet along the DW over much larger distances. This happens because the presence of the DW results in a generation of an odd-frequency triplet s-wave component of the condensate. The phenomenon discovered here may help to explain a recent experiment on high-temperature superconductor-ferromagnet bilayers.
机译:我们考虑由d波层状超导体和具有畴壁(DW)的扩散铁磁体组成的双层。假定超导体中的c轴和铁磁体中的DW垂直于界面。我们证明,在这种异质结构中,不均匀的交换场增强了邻近效应。结果表明,在没有交换场的情况下,d波的冷凝物在平均自由程i上的正常金属中衰减,而超导电性沿DW沿铁磁体穿透的距离更大。发生这种情况是因为DW的存在会导致冷凝物产生奇数频率的三重态s波成分。在这里发现的现象可能有助于解释高温超导体-铁磁体双层的最新实验。

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