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A new approach to the current distribution in field cooled superconductors disks

机译:现场冷却超导器磁盘中当前分布的新方法

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摘要

The Bean model considers that in field cooled superconducting cylinders with diameter R, the currents flow over all the thickness of the superconductor along circular paths, the minimum radius of which depends on the magnetizing field and the critical current density. A combination of trapped field and levitation force measurements reported recently has shown, however, that in YBCO and MgB2 disks the current flows in fact in a restricted region with thickness t of the superconductor. In this contribution, from measurements carried out on two YBCO and two MgB2 disks, we report the dependence on temperature of t and J(p), the current density in this region, as well as that of the field trapped by the samples. The results confirm that t decreases as the temperature decreases. This behaviour is ascribed to the conservation of the magnetic energy stored in the superconductor, which depends on the magnetizing source and not on the measurement temperature. As a consequence, t behaves as J(p)(2/3) while the field trapped along the axis of the cylinder behaves as J(p)(2/3) These claims are substantiated by the experimental results. The possibility that J(p) is equal to the depairing current is investigated.
机译:豆型模型认为,在具有直径R的现场冷却的超导汽缸中,电流沿着圆形路径流过超导体的所有厚度,其最小半径取决于磁化场和临界电流密度。然而,最近报道的被困的场和悬浮力测量的组合如,在YBCO和MGB2磁盘中,电流实际上在具有超导体的厚度T的受限制区域中流动。在这一贡献中,从两个YBCO和两个MGB2磁盘进行的测量,我们报告了T和J(P)温度的依赖性,该区域中的电流密度,以及样品被捕获的场。结果证实,随着温度的降低,T降低。这种行为归因于储存存储在超导体中的磁能,这取决于磁化源而不是测量温度。结果,T表现为j(p)(2/3),而沿汽缸轴捕获的场行为作为j(p)(2/3),这些权利要求由实验结果证实。研究了j(p)等于存档电流的可能性。

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