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首页> 外文期刊>Journal of Superconductivity and Novel Magnetism >Magnetic Field Dependence of Intergrain Pinning Potential in Bulk Granular Composites YBCO + CuO Demonstrating Large Magneto-Resistive Effect
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Magnetic Field Dependence of Intergrain Pinning Potential in Bulk Granular Composites YBCO + CuO Demonstrating Large Magneto-Resistive Effect

机译:块状颗粒复合材料YBCO + CuO的晶粒间钉扎势的磁场依赖性证明了大的磁阻效应

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摘要

The broadening of the resistive transition in magnetic field and isotherms of magnetoresistance of bulk composites Y–Ba–Cu–O + CuO have been studied. These composites exhibit large magneto-resistive effect in a wide temperature range below T C due to weakening of Josephson coupling in this system. The broadening of the resistive transition and magnetoresistance are explained well by the Ambegaokar–Halperin (AH) model for phase slip in Josephson junctions. The magnetic field dependence of pinning potential in the intergrain boundaries deduced from AH model found out to be similar to that of critical current of an array of Josephson junctions. The values of pinning energy point out that the large magneto-resistive effect observed in the composites results from flux flow-like processes at the intergrain boundaries.
机译:研究了块状复合材料Y–Ba–Cu–O + CuO的磁场中电阻转变的展宽和磁阻等温线。由于该系统中约瑟夫森耦合的减弱,这些复合材料在低于T C 的宽温度范围内均表现出较大的磁阻效应。电阻跃迁和磁阻的扩展可以通过约瑟夫森结的相移的Ambegaokar-Halperin(AH)模型很好地解释。由AH模型推导的晶粒间界中钉扎电位的磁场依赖性与约瑟夫森结阵列的临界电流相似。钉扎能量的值指出,在复合材料中观察到的大磁阻效应是由晶间边界处的类似通量流的过程引起的。

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