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High transition temperature SQUIDs: Noise and applications.

机译:高转变温度SQUID:噪声和应用。

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摘要

A major challenge in the design and operation of high transition temperature (Tc) Superconducting Quantum Interference Devices (SQUIDS) is their potential to exhibit substantially higher levels of noise at low frequency f when exposed to earth's magnetic field. To investigate this problem, we studied the noise of high-Tc SQUIDs, directly coupled magnetometers and multilayer magnetometers in both static and changing magnetic fields. The directly coupled magnetometer consists of a do SQUID connected to a large area pickup loop in parallel. The multilayer magnetometer involves a multiturn flux transformer inductively coupled to a do SQUID on a separate substrate. All the devices are made of thin films of the high-Tc superconductor YBa2Cu3O7−δ, patterned into 4 μm linewidths.; After cooling in a magnetic field, the devices showed no increase in 1/f noise for fields up to threshold values well above the earth's magnetic field. The devices were also cooled in a magnetic field that was subsequently turned off. The 1/f noise of bare SQUIDs was unchanged for fields up to 12 μT. The addition of the flux transformer containing flux dams increased the sensitivity to magnetic field by a factor of 43 while reducing the threshold field only moderately, to 5 μT. This result implies that the multilayer magnetometer can be rotated in the earth's magnetic field through an angle of up to 26° without increasing the low frequency noise.; The results of these studies were incorporated into a 5-channel high-T c magnetocardiography system involving two first-derivative SQUID gradiometers and three reference SQUIDs. Each planar gradiometer consists of a directly coupled SQUID magnetometer inductively coupled to the smaller coil of an asymmetric, two-loop flux transformer. The reference SQUIDs are patterned into 4 μm lines. The outputs of the five channels were subtracted in software to form a second-derivative gradiometer. Its long baseline, 48 mm, and good intrinsic balance, better than 1 part in 100, make the gradiometer an excellent candidate for measuring heart signals in an unshielded environment. Using this system, we obtained adult magnetocardiograms in ambient environments of sufficient quality for clinical applications.
机译:高转变温度(T c )超导量子干扰设备(SQUIDS)的设计和操作中的主要挑战是,当暴露于地磁场时,它们有可能在低频f处表现出更高水平的噪声。为了研究这个问题,我们研究了静磁场和变化磁场中高T c SQUID,直接耦合磁力仪和多层磁力仪的噪声。直接耦合的磁力计由一个do SQUID组成,该do SQUID并行连接到大面积拾取回路。多层磁力计包括一个多匝磁通互感器,该多匝磁通互感器与独立基板上的do SQUID电感耦合。所有器件均由高T c 超导体YBa 2 Cu 3 O 7-δ,图案化为4μm的线宽。在磁场中冷却之后,对于达到远高于地球磁场的阈值的场,设备显示出1 / f噪声没有增加。器件也在随后关闭的磁场中冷却。对于高达12μT的磁场,裸SQUID的1 / f噪声保持不变。添加包含磁通坝的磁通互感器可将对磁场的敏感度提高43倍,同时仅将阈值场适度降低至5μT。该结果表明,多层磁力计可以在地球磁场中旋转多达26°的角度,而不会增加低频噪声。这些研究结果被整合到一个5通道高T c 心电图系统中,该系统包括两个一阶SQUID梯度仪和三个参考SQUID。每个平面梯度仪都包括一个直接耦合的SQUID磁力仪,该电感仪感应耦合到一个不对称两环磁通量转换器的较小线圈。参考SQUID被图案化为4μm线。用软件减去这五个通道的输出,以形成二阶导数梯度仪。它的基线长48毫米,并具有良好的固有平衡,优于100的十分之一,使该梯度仪成为在非屏蔽环境下测量心脏信号的极佳选择。使用该系统,我们在周围环境中获得了足以用于临床的高质量成人心电图。

著录项

  • 作者

    Cho, Hsiao-Mei.;

  • 作者单位

    University of Houston.;

  • 授予单位 University of Houston.;
  • 学科 Physics Condensed Matter.; Engineering Biomedical.
  • 学位 Ph.D.
  • 年度 2001
  • 页码 107 p.
  • 总页数 107
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物医学工程;
  • 关键词

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