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A nanoscale SQUID operating at high magnetic fields

机译:在高磁场下运行的纳米级SQUID

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A washer-free Nb nanoSQUID has been developed for measuring magnetization changes from nanoscale objects. The SQUID loop is etched into a 250nm wide Au/Nb bilayer track and the diameter of the SQUID hole is ~ 70nm. In the presence of a magnetic field perpendicular to the plane of the SQUID, vortex penetration into the 250nm wide track can be observed via the critical current-applied field characteristic and the value at which vortex first penetrates is consistent with the theoretical prediction. Upon removing the applied field, the penetrated vortices escape the track and the critical current at zero field is restored.
机译:已经开发了一种无垫圈的Nb nanoSQUID,用于测量纳米级物体的磁化强度变化。将SQUID环蚀刻到250nm宽的Au / Nb双层轨道中,SQUID孔的直径约为70nm。在垂直于SQUID平面的磁场的存在下,可以通过施加的临界电流场特性观察到旋涡进入250nm宽磁道,并且旋涡首次穿透的值与理论预测一致。去除外加磁场后,穿透的涡流会逃逸出轨道,并且零磁场下的临界电流得以恢复。

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