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Anisotropy of the Magnetoresistive Properties of Granular High-Temperature Superconductors Resulting from Magnetic Flux Compression in the Intergrain Medium

机译:颗粒高温超导体的磁阻性能各向异性,该磁通量压缩在晶体介质中产生的磁通量压缩

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摘要

To elucidate the origin of the well-known anisotropy of the magnetoresistive properties of granular high-temperature superconductors (HTSs), which is related to the mutual orientation of magnetic field H and transport current j, we investigate the hysteretic dependences of magnetoresistance R(H) of the yttrium HTS sample at the perpendicular (H perpendicular to j) and parallel (H parallel to j) configurations. The hysteretic R(H) dependences are analyzed using the concept of the effective field in the intergrain boundaries through which superconducting current carriers tunnel. The effective degree of magnetic flux compression in the intergrain medium at the perpendicular configuration was found to be twice as much as at the parallel one. This approach explains well the anisotropy of the magnetoresistive properties of granular HTSs, which was previously reported by many authors, and the temperature dependences of the resistance in the resistive transition region.
机译:为了阐明颗粒高温超导体(HTSS)的磁阻性质的致磁性性质的众所周知的各向异性的来源,这与磁场H和运输电流J有关,我们研究了磁阻R的滞后依赖性R(H. )在垂直的(H垂直于j)和平行(H平行于j)配置时的钇hts样品。 利用晶体边界中的有效场的概念分析滞后R(H)依赖性通过该滞后电流载波隧道。 发现垂直构型介质中的磁通量压缩的有效程度是平行介质的两倍。 该方法讨论了粒状HTSS的磁阻性质的各向异性,该粒状HTSS先前由许多作者报告,以及电阻过渡区域的电阻的温度依赖性。

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