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Dynamic resistance of a high-Tc superconducting flux pump

机译:高T c 超导通量泵的动态电阻

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摘要

Superconducting flux pumps enable large currents to be injected into a superconducting circuit, without the requirement for thermally conducting current leads which bridge between the cryogenic environment and room temperature. In this work, we have built and studied a mechanically rotating flux pump which employs a coated conductor high-Tc superconducting (HTS) stator. This flux pump has been used to excite an HTS double pancake coil at 77 K. Operation of the flux pump causes the current within the superconducting circuit to increase over time, before saturating at a limiting value. Interestingly, the superconducting flux pump is found to possess an effective internal resistance, Reff, which varies linearly with frequency, and is two orders of magnitude larger than the measured series resistance of the soldered contacts within the circuit. This internal resistance sets a limit for the maximum achievable output current from the flux pump, which is independent of the operating frequency. We attribute this effect to dynamic resistance within the superconducting stator wire which is caused by the interaction between the DC transport current and the imposed alternating magnetic field. We provide an analytical expression describing the output characteristics of our rotating flux pump in the high frequency limit, and demonstrate that it describes the time-dependent behavior of our experimental circuit. Dynamic resistance is highlighted as a generic issue that must be considered when optimizing the design of an HTS flux pump.
机译:超导通量泵可以将大电流注入超导电路,而无需在低温环境和室温之间架桥的导热电流导线。在这项工作中,我们已经建立并研究了一种机械旋转式磁通量泵,该泵采用涂层导体高T c 超导(HTS)定子。该通量泵已被用来在77 K的温度下励磁HTS双煎饼线圈,通量泵的工作使超导电路中的电流随时间增加,直到达到极限值为止。有趣的是,发现超导通量泵具有有效的内部电阻R eff ,该电阻随频率线性变化,并且比电路中焊接触点的实测串联电阻大两个数量级。 。该内部电阻为通量泵可达到的最大输出电流设置了一个极限,该极限与工作频率无关。我们将此影响归因于超导定子线内的动态电阻,该动态电阻是由直流传输电流和施加的交变磁场之间的相互作用引起的。我们提供了一个解析表达式,描述了我们的旋转磁通泵在高频极限下的输出特性,并证明它描述了我们实验电路的时间相关行为。动态阻力被认为是优化HTS流量泵设计时必须考虑的通用问题。

著录项

  • 来源
    《Applied Physics Letters》 |2014年第11期|1-4|共4页
  • 作者单位

    Robinson Research Institute, Victoria University of Wellington, P.O. Box 33436, 69 Gracefield Road, Lower Hutt 5046, New Zealand;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 13:10:24

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