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首页> 外文期刊>ACS nano >Complex Three-Dimensional Magnetic Ordering in Segmented Nanowire Arrays
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Complex Three-Dimensional Magnetic Ordering in Segmented Nanowire Arrays

机译:分段纳米线阵列中复杂的三维磁性排序

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摘要

A comprehensive three-dimensional picture of magnetic ordering in high-density arrays of segmented FeGa/Cu nanowires is experimentally realized through the application of polarized small-angle neutron scattering. The competing energetics of dipolar interactions, shape anisotropy, and Zeeman energy in concert stabilize a highly tunable-spin structure that depends heavily on the applied field and sample geometry. Consequently, we observe ferromagnetic and antiferromagnetic interactions both among wires and between segments within individual wires. The resulting "magnetic structure for our nanowire sample in a low field is a fan with magnetization perpendicular to the wire axis that aligns nearly antiparallel from one segment to the next along the wire axis. Additionally, while the low-field interwire coupling is ferromagnetic, application of a field tips the moments toward the nanowire axis, resulting in highly frustrated antiferromagnetic stripe patterns in the hexagonal nanowire lattice. Theoretical calculations confirm these observations, providing insight into the competing interactions and resulting stability windows for a variety of ordered magnetic structures. These results provide a roadmap for designing high-density magnetic nanowire arrays for spintronic device applications.
机译:通过应用偏振的小角中子散射实验地实现了在分段的Fega / Cu纳米线的高密度阵列中磁化的综合三维图像。偶极相互作用,形状各向异性和塞曼能量的竞争能量稳定在施加的场和样品几何上的高度可调 - 旋转结构,其依赖于普及。因此,我们观察电线之间的铁磁和反铁磁相互作用以及单个电线内的区段之间。由此产生的“用于低场中的纳米线样品的磁性结构是具有垂直于线轴的磁化的风扇,该磁化是沿着线轴的一个段对接的线轴对准。另外,虽然低场交互耦合是铁磁性的,而是铁磁,将场尖朝向纳米线轴的瞬间施加,导致六边形纳米线晶格中的高度沮丧的反铁磁条纹图案。理论计算证实了这些观察结果,为各种有序磁结构提供了洞察力的互补性,并产生了稳定性窗口。这些结果提供用于设计用于旋转式装置应用的高密度磁性纳米线阵列的路线图。

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