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Magnetic Imaging of Superconducting Tapes to Determine Current Flow

机译:超导带的磁成像确定电流

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We have developed a magnetic imaging system that uses magnetoresistive read heads from computer hard disk drives to map the transport-current-induced magnetic field at the surface of superconducting tapes at liquid nitrogen temperature. Transport current pathways are determined from the 2-dimensional magnetic field maps using established inversion schemes. We examined the current flow in pulsed-laser-deposited YBa_2Cu_3O_(7-δ) films patterned on single crystal SrTiO_3 substrates and on a textured yttria-stabilized-zirconia layer deposited on an Inconel ribbon by ion beam assisted deposition. The transport current densities in all cases were consistent with the Critical State Model. For the Inconel-based sample, the transport current density maps have allowed us to observe defects and determine the region that limits the current carrying capacity of the structure.
机译:我们已经开发了一种磁成像系统,该系统使用来自计算机硬盘驱动器的磁阻读取头在液氮温度下映射超导带表面的传输电流感应磁场。使用建立的反演方案从二维磁场图确定传输电流路径。我们检查了在单晶SrTiO_3衬底和通过离子束辅助沉积在Inconel带上沉积的织构化氧化钇稳定氧化锆层上构图的脉冲激光沉积YBa_2Cu_3O_(7-δ)膜中的电流。在所有情况下,运输电流密度均与临界状态模型一致。对于基于Inconel的样品,传输电流密度图使我们能够观察缺陷并确定限制结构载流能力的区域。

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