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High spatial resolution quantitative micromagnetics (invited)

机译:高空间分辨率定量微磁学(特邀)

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Magnetization profiles at surfaces are observed with scanning electron microscopy with polarization analysis (SEMPA). This technique allows for quantitative analysis of the vector magnetization profile with 70 nm spatial resolution. Magnetization profiles in surface Ne´el walls which terminate bulk 180° Bloch walls at surfaces have been calculated by solving the micromagnetic equations using energy minimization. The micromagnetic calculations show that the surface Ne´el wall penetrates a distance from the surface comparable to a Bloch wall width and that the surface Ne´el wall width is at least twice the bulk Bloch wall width. The dependence of the domain wall magnetization on sample thickness is calculated for Fe, and model predictions of the wall widths that would be determined by transmission Lorentz microscopy are compared with the experimental results. The magnetic field outside of the sample, which gives rise to contrast with the Bitter technique and magnetic force microscopy (MFM), is a complicated superposition of contributions from both bulk and surface walls. Moreover, a strong mutual interaction between the sample and the MFM tip may alter the sample magnetization.
机译:通过带偏振分析(SEMPA)的扫描电子显微镜观察表面的磁化分布。该技术允许以 70 nm 的空间分辨率对矢量磁化剖面进行定量分析。通过使用能量最小化求解微磁方程,计算了在表面终止体 180° 布洛赫壁的表面 Ne'el 壁中的磁化剖面。微磁计算表明,表面Ne'el壁穿透与表面的距离与Bloch壁宽相当,并且表面Ne'el壁宽度至少是体Bloch壁宽度的两倍。计算了Fe的畴壁磁化强度对样品厚度的依赖性,并将透射洛伦兹显微镜测定的壁宽模型预测与实验结果进行了比较。样品外部的磁场与苦味技术和磁力显微镜 (MFM) 形成对比,是本体壁和表面壁贡献的复杂叠加。此外,样品和MFM针尖之间的强烈相互作用可能会改变样品的磁化强度。

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