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Upper critical fields and critical current densities of Fe-based superconductors as compared to those of other technical superconductors

机译:与其他技术超导体相​​比,铁基超导体的上临界场和临界电流密度

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Three years since the discovery by the Hosono's group of Fe-based superconductors, an enormous number of compounds, belonging to several different families have been discovered and fundamental properties have been deeply investigated in order to clarify the interplay between magnetisms and superconductivity in these compounds. Indeed, the actual potential of these compounds for practical applications remains still unclear. Fe-based superconductors are midway between high temperature superconductors (HTSCs) and MgB _2. In Fe-based superconductors the critical current is rather independent of the field, similarly to HTSCs, as a consequence of the exceptionally high upper critical field and strong pinning associated with nm-scale local modulations of the order parameter. They exhibit low anisotropy of the critical current with respect to the crystalline directions, as in the case of MgB _2, which allows current flow along the c-axis. However, Fe-based superconductor polycrystalline materials currently available still exhibit electromagnetic granularity, like the HTSCs, which suppresses superconducting current flow over long length. Whether the nature of such granularity is extrinsic, as due to spurious phases or cracks between grains or intrinsic, as related to misalignment of adjacent grains, is under debate. These aspects will be reviewed in the light of the recent literature.
机译:自Hosono的铁基超导体小组发现三年以来,已经发现了属于几个不同族的大量化合物,并对基础性质进行了深入研究,以阐明这些化合物的磁性和超导性之间的相互作用。实际上,这些化合物在实际应用中的实际潜力仍然不清楚。铁基超导体位于高温超导体(HTSC)和MgB _2之间。在铁基超导体中,与HTSCs一样,由于电流极高的上临界场和与阶数参数的纳米级局部调制有关的强钉扎作用,临界电流与磁场无关。与MgB _2一样,它们在临界方向上相对于晶向表现出较低的各向异性,这使电流沿c轴流动。然而,目前可用的铁基超导体多晶材料仍表现出电磁粒度,例如HTSC,可抑制长距离内的超导电流。这种粒度的性质是否是外在的,例如由于晶粒之间的虚假相或裂纹所致,还是由于与相邻晶粒的未对准有关而固有的,是固有的?这些方面将根据最新文献进行回顾。

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