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首页> 外文期刊>ACS nano >Batch-fabrication of cantilevered magnets on attonewton-sensitivity mechanical oscillators for scanned-probe nanoscale magnetic resonance imaging
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Batch-fabrication of cantilevered magnets on attonewton-sensitivity mechanical oscillators for scanned-probe nanoscale magnetic resonance imaging

机译:在attonewton灵敏度机械振荡器上批量制造悬臂磁体,用于扫描探针纳米级磁共振成像

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摘要

We have batch-fabricated cantilevers with ~100 nm diameter nickel nanorod tips and force sensitivities of a few attonewtons at 4.2 K. The magnetic nanorods were engineered to overhang the leading edge of the cantilever, and consequently the cantilevers experience what we believe is the lowest surface noise ever achieved in a scanned probe experiment. Cantilever magnetometry indicated that the tips were well magnetized, with a ≤ 20 nm dead layer; the composition of the dead layer was studied by electron microscopy and electron energy loss spectroscopy. In what we believe is the first demonstration of scanned probe detection of electron-spin resonance from a batch-fabricated tip, the cantilevers were used to observe electron-spin resonance from nitroxide spin labels in a film via force-gradient-induced shifts in cantilever resonance frequency. The magnetic field dependence of the magnetic resonance signal suggests a nonuniform tip magnetization at an applied field near 0.6 T.
机译:我们已经批量制造了直径约100 nm的镍纳米棒尖端,并且在4.2 K时有几个atnewnews的力敏感度。扫描探针实验中曾经达到的表面噪声。悬臂磁力测量表明尖端被良好磁化,死层≤20 nm。通过电子显微镜和电子能量损失谱研究了死层的组成。在我们认为是扫描探针从批量制造的尖端检测电子自旋共振的第一个演示中,悬臂用于通过力梯度引起的悬臂位移观察薄膜中氮氧化物自旋标记的电子自旋共振。共振频率。磁共振信号的磁场依赖性表明在0.6 T附近的外加磁场下尖端磁化不均匀。

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