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Flux noise and flux creep in YBCO thin films

机译:YBCO薄膜中的通量噪声和通量蠕变

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The authors used a DC SQUID (superconducting quantum interference device) to measure the low-frequency magnetic flux noise produced by thin-film rings of YBa/sub 2/Cu/sub 3/O/sub 7- delta / (YBCO) with various microstructures. Below the transition temperature T/sub c/ of the YBCO, the spectral density of the noise scales as 1/f (f is the frequency) from 1 Hz to 1 kHz. This noise generally increases with temperature and vanishes abruptly at T/sub c/. Improvements in crystalline microstructure greatly reduce the magnitude of the noise, which was lowest for a highly orientated sample with its c-axis perpendicular to the substrate. Making a radial cut to interrupt current paths around the sample ring does not significantly affect the magnitude of the noise, demonstrating that the noise arises from a local mechanism such as the thermally activated hopping of flux bundles. Flux creep was observed in one sample cooled in a magnetic field of 1 mT, and the creep rate exhibited a sharp maximum near 80 K. It is concluded that SQUIDs and flux transformers of YBCO must be fabricated from highly orientated films to obtain low noise at low frequencies.
机译:作者使用DC SQUID(超导量子干涉装置)来测量由YBa / sub 2 / Cu / sub 3 / O / sub 7-delta /(YBCO)薄膜环产生的低频磁通噪声。微观结构。在YBCO的转变温度T / sub c /以下,噪声的频谱密度从1 Hz到1 kHz缩放为1 / f(f是频率)。该噪声通常随温度而增加,并在T / sub c /时突然消失。晶体微观结构的改善极大地降低了噪声的幅度,这对于c轴垂直于基板的高度取向的样品而言是最低的。进行径向切割以中断采样环周围的电流路径不会明显影响噪声的大小,这表明噪声是由局部机制(例如磁通束的热激活跳变)引起的。在一个冷却至1 mT的磁场中的样品中观察到了磁通蠕变,蠕变速率在80 K附近表现出急剧的最大值。结论是,YBCO的SQUID和磁通互感器必须由高度取向的薄膜制成,以获得低噪声。低频。

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