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Nature of the low magnetization decay on stacks of second generation superconducting tapes under crossed and rotating magnetic field experiments

机译:在交叉和旋转磁场实验下第二代超导带堆叠上低磁化强度衰减的性质

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摘要

The extremely low decay factor on the trapped magnetic field by stacks of second-generation high-temperature superconducting tapes reported in Appl. Phys. Lett. 104, 232602 (2014), is in apparent contradiction with the classical results for the demagnetization of superconducting bulks and thin films, where the samples undergo a severe and progressive decay under crossed magnetic field conditions. Nevertheless, in this paper, we demonstrate how the theoretical approaches and experimental measurements on superconducting bulks, thin films, and stacks of superconducting tapes can be reconciled, not only under the crossed field configuration but also under rotating magnetic field conditions, by showing that the stacks of commercial tapes behave as a system of electrically unconnected layers preventing the deformation of profiles of current along its external contour. This study extends up to the consideration of using novel superconducting/ferromagnetic metastructures, where soft ferromagnetic films are interlayered, reporting a further reduction on the magnetization decay of about 50% in the crossed field configuration. Remarkably, after applying the same number of cycles either of rotating or crossed magnetic field to these metastructures, the difference between the magnetization decay is found to be negligible, what demonstrates their highly superior performance when compared to conventional stacks of superconducting tapes.
机译:在Appl中报道了第二代高温超导带堆叠对捕获磁场的极低衰减因子。物理来吧104,232602(2014),与超导块和薄膜去磁的经典结果明显矛盾,其中样品在交叉磁场条件下会经历严重的渐进衰减。尽管如此,在本文中,我们证明了超导块,薄膜和超导带堆叠的理论方法和实验测量如何不仅在交叉场配置下而且在旋转磁场条件下也可以调和。商业胶带的叠层表现为电连接层的系统,可防止电流轮廓沿其外部轮廓变形。这项研究扩展到使用新型超导/铁磁亚结构的考虑,其中软铁磁膜夹层,报告了在交叉磁场配置中磁化衰减进一步降低了约50%。值得注意的是,在对这些元结构施加相同数量的旋转磁场或交叉磁场循环之后,发现磁化衰减之间的差异可以忽略不计,这证明了它们与传统超导带堆叠相比具有更高的性能。

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