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首页> 外文期刊>IEEE Transactions on Applied Superconductivity >Imaging of vortices and 1/f noise sources in YBCO dc SQUIDs usinglow-temperature scanning electron microscopy
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Imaging of vortices and 1/f noise sources in YBCO dc SQUIDs usinglow-temperature scanning electron microscopy

机译:使用低温扫描电子显微镜对YBCO dc SQUID中的涡旋和1 / f噪声源进行成像

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Abrikosov- and Josephson-Vortices trapped in bicrystalline YBa2Cu3O7 washer dc SQUIDs containing regular arrays of micrometer holes (antidots) have been directly imaged using a standard scanning electron microscope equipped with a liquid nitrogen cryostage. The signal generation is based on the electron-beam-induced local displacement of vortices, which is detected as a flux change in the SQUID loop. This technique allows one a simple visualization of vortices with a spatial resolution of ≈1 μm, at variable temperature and magnetic field. The magnitude of the vortex signal is a direct measure of the amount of flux a vortex couples into the SQUID hole. In addition to the static local distribution of vortices, this technique can provide information on the dynamic behaviour of vortices trapped in the SQUID loop, by using the beam as a local perturbation and measuring the low-frequency noise induced by vortex motion
机译:使用配备有液氮冷冻台的标准扫描电子显微镜,直接成像了包含在规则的微米孔阵列(解毒剂)中的YBa2Cu3O7双晶清洗器直流SQUID中捕获的Abrikosov-和Josephson-Vortices。信号的产生是基于电子束引起的涡旋局部位移,该位移被检测为SQUID回路中的通量变化。该技术允许在可变温度和磁场下以1微米的空间分辨率对涡旋进行简单可视化。涡旋信号的大小是涡旋耦合到SQUID孔中的通量的直接量度。除了涡流的静态局部分布之外,该技术还可以通过将光束用作局部扰动并测量涡旋运动引起的低频噪声,来提供有关SQUID回路中捕获的涡旋的动态行为的信息。

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