论文标题

散装磁铁中的纳米结构旋转纹理

Unraveling Nanostructured Spin Textures in Bulk Magnets

论文作者

Bender, Philipp, Leliaert, Jonathan, Bersweiler, Mathias, Honecker, Dirk, Michels, Andreas

论文摘要

磁性中的关键挑战之一是确定厚样品(例如永久铁磁体)体积内的纳米磁化特征。由于中子的渗透深度较大,磁性小角度中子散射(SAN)是表征散装样品的强大技术。磁SAN的主要挑战是从相互散射数据访问真实空间磁化矢量场。在这封信中,引入了一种快速的迭代算法,该算法允许人们从散射模式中提取潜在的二维磁相关函数。此方法在这里用于分析纳米纤维的磁性微结构,纳米纤维的纳米晶合金,由于其非凡的软磁性特性,该合金被广泛用于电力电子。可以证明,计算的相关函数清楚地反映了三维磁化矢量场对检测器平面的投影,这表明可以将所使用的方法应用于纳米分辨率分辨率的大量样品中直接探针。

One of the key challenges in magnetism remains the determination of the nanoscopic magnetization profile within the volume of thick samples, such as permanent ferromagnets. Thanks to the large penetration depth of neutrons, magnetic small-angle neutron scattering (SANS) is a powerful technique to characterize bulk samples. The major challenge regarding magnetic SANS is accessing the real-space magnetization vector field from the reciprocal scattering data. In this letter, a fast iterative algorithm is introduced that allows one to extract the underlying two-dimensional magnetic correlation functions from the scattering patterns. This approach is used here to analyze the magnetic microstructure of Nanoperm, a nanocrystalline alloy which is widely used in power electronics due to its extraordinary soft magnetic properties. It can be shown that the computed correlation functions clearly reflect the projection of the three-dimensional magnetization vector field onto the detector plane, which demonstrates that the used methodology can be applied to probe directly spin-textures within bulk samples with nanometer-resolution.

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