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Critical current transition study on multifilamentary NbTi superconductors having a Cu, a CuNi, or a mixed matrix

机译:含Cu,CuNi或混合基质的多丝NbTi超导体的临界电流转变研究

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摘要

Measurement of voltage-current characteristics in multifilamentary wires, showing the transition from the superconducting to normal state, provides information about the quality of the wires and their production techniques. Two methods of describing this transition are discussed. In general, the so-called n-power law turns out to be adequate in the critical current region. The dependence of n on the magnetic field yields information about the inner structure of the wire, especially whether the limitation of the current is caused by intrinsic or extrinsic effects. Measurements were carried out at 4.2 K on several wires in order to investigate the above mentioned aspects with respect to the critical current transition. The current range in which the n-power law was valid was tested for two wires with highly resistive matrices. Then the dependence of n on the applied field was investigated. A wire with very thin filaments and one with thicker filaments were used. When submicrovolt measurements were carried out, it was found that in several ranges of current other n-values can be distinguished. This is thought to be caused by a current diffusion process. In an alternate way of assessing the resistive transitions, the authors used a critical current distribution function found by calculating the second derivative of the voltage with respect to the current.
机译:多丝电线中电压-电流特性的测量显示了从超导状态到正常状态的转变,提供了有关电线质量及其生产技术的信息。讨论了描述这种过渡的两种方法。通常,在关键电流区域中,所谓的n幂定律就足够了。 n对磁场的依赖性产生有关导线内部结构的信息,尤其是电流限制是由固有效应还是非固有效应引起的信息。为了研究上述关于临界电流转换的方面,在多条导线上以4.2 K进行了测量。对具有高电阻矩阵的两根导线测试了n幂定律有效的电流范围。然后研究了n对应用场的依赖性。使用一根细丝非常细的电线和细丝较粗的电线。当进行亚微伏测量时,发现在电流的几个范围内,其他n值可以区分。认为这是由电流扩散过程引起的。在评估电阻转换的另一种方式中,作者使用了临界电流分布函数,该函数是通过计算电压相对于电流的二阶导数得出的。

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