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Magnetic force microscopy investigation of arrays of nickel nanowires and nanotubes

机译:镍纳米线和纳米管阵列的磁力显微镜研究

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The magnetic properties of arrays of nanowires (NWs) and nanotubes (NTs), 150 nm in diameter, electrodeposited inside nanoporous polycarbonate membranes are investigated. The comparison of the nanoscopic magnetic force microscopy (MFM) imaging and the macroscopic behavior as measured by alternating gradient force magnetometry (AGFM) is made. It is shown that MFM is a complementary technique that provides an understanding of the magnetization reversal characteristics at the microscopic scale of individual nanostructures. The local hysteresis loops have been extracted by MFM measurements. The influence of the shape of such elongated nanostructures on the dipolar coupling and consequently on the squareness of the hysteresis curves is demonstrated. It is shown that the nanowires exhibit stronger magnetic interactions than nanotubes. The non-uniformity of the magnetization states is also revealed by combining the MFM and AGFM measurements.
机译:研究了纳米多孔聚碳酸酯膜内电沉积的直径为150 nm的纳米线(NWs)和纳米管(NTs)阵列的磁性。比较了纳米磁力显微镜(MFM)成像与交变梯度力磁力计(AGFM)测量的宏观行为。结果表明,MFM是一种互补技术,可以在单个纳米结构的微观尺度上理解磁化反转特性。局部迟滞环路已通过MFM测量提取。证明了这种细长纳米结构的形状对偶极耦合的影响,从而对磁滞曲线的平直度产生影响。结果表明,纳米线表现出比纳米管更强的磁相互作用。通过结合MFM和AGFM测量,还揭示了磁化态的不均匀性。

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