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A flux extraction device to measure the magnetic moment of large samples; application to bulk superconductors

机译:一种磁通量提取装置,用于测量大样本的磁矩;应用于块状超导体

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摘要

We report the design and construction of a flux extraction device to measure the DC magnetic moment of large samples (i.e., several cm3) at cryogenic temperature. The signal is constructed by integrating the electromotive force generated by two coils wound in series-opposition that move around the sample. We show that an octupole expansion of the magnetic vector potential can be used conveniently to treat near-field effects for this geometrical configuration. The resulting expansion is tested for the case of a large, permanently magnetized, type-II superconducting sample. The dimensions of the sensing coils are determined in such a way that the measurement is influenced by the dipole magnetic moment of the sample and not by moments of higher order, within user-determined upper bounds. The device, which is able to measure magnetic moments in excess of 1 Am2 (1000 emu), is validated by (i) a direct calibration experiment using a small coil driven by a known current and (ii) by comparison with the results of numerical calculations obtained previously using a flux measurement technique. The sensitivity of the device is demonstrated by the measurement of flux-creep relaxation of the magnetization in a large bulk superconductor sample at liquid nitrogen temperature (77 K).
机译:我们报告了在低温下测量大样品(即几cm3)的直流磁矩的磁通量提取设备的设计和构造。该信号是通过积分两个在样品周围运动的串联缠绕的线圈产生的电动势来构建的。我们表明,磁极矢量势的八极展开可方便地用于治疗这种几何构型的近场效应。对于大型,永久磁化的II型超导样品,将测试由此产生的膨胀。感测线圈的尺寸以这样的方式确定:在用户确定的上限范围内,测量值受样品的偶极磁矩而不是高阶矩的影响。该设备能够测量超过1 Am2(1000 emu)的磁矩,通过(i)使用由已知电流驱动的小线圈进行的直接校准实验,以及(ii)与数值结果进行比较来验证该设备的有效性。以前使用通量测量技术获得的计算结果。通过在液氮温度(77 K)下测量大块超导体样品中磁化强度的磁通蠕变蠕变松弛,可以证明该设备的灵敏度。

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