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Current-voltage characteristics in a superconducting Bi-2223 tape in the range of very low electric field

机译:Bi-2223超导带在极低电场范围内的电流-电压特性

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摘要

Current-voltage characteristics in the range of very low electric field were analyzed from a relaxation of the magnetization using a SQUID magnetometer in a superconducting Bi-2223 tape. It was found that the observed current-voltage characteristics in this range were scaled well as predicted by the vortex glass-liquid transition theory. However, the obtained transition field was much lower than that obtained from a scaling in the higher electric field range. At the same time, the dynamic critical index, z, was much larger than usual values. Hence, it is concluded that these parameters are not uniquely determined independently of the level of electric field. The experimental result was compared with the theoretical analysis using the flux creep-flow theory in which the distribution of the effective flux pinning strength was taken into account. It was found that the theoretical result explains approximately the observed result. This shows that the essential mechanism which governs the transport property in the superconducting tape is the flux pinning
机译:使用超导Bi-2223胶带中的SQUID磁力计,通过放松磁化强度来分析极低电场范围内的电流-电压特性。发现在该范围内观察到的电流-电压特性按比例缩放,如通过涡旋玻璃-液体转变理论所预测的那样。但是,所获得的跃迁场远低于在较高电场范围内按比例缩放所获得的跃迁场。同时,动态临界指数z比通常值大得多。因此,可以得出结论,这些参数并不是独立于电场强度而唯一确定的。将实验结果与使用通量蠕变流理论的理论分析进行了比较,其中考虑了有效通量钉扎强度的分布。发现理论结果大致解释了观察结果。这表明,控制超导带中传输特性的基本机制是磁通钉扎

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