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Control of the switching behavior of ferromagnetic nanowires using magnetostatic interactions

机译:利用静磁相互作用控制铁磁纳米线的开关行为

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摘要

Magnetostatic interactions between two end-to-end Permalloy (Ni80Fe20) nanowires have been studied as a function of their separation, end shape, and width. The change in switching field increases as the wires become closer, with deviations from the switching field of an isolated wire of up to 40% observed. The sign of the change depends on the relative magnetization orientation of the two wires, with higher fields for parallel magnetization and lower fields for antiparallel magnetization. A wire end shape has a strong influence, with larger field variations being seen for flat-ended wires than wires with tapered ends. The micromagnetic modeling and experiments performed here were in good qualitative agreement. The experimental control of switching behavior of one nanowire with another was also demonstrated using magnetostatic interactions.
机译:已经研究了两个端对端坡莫合金(Ni80Fe20)纳米线之间的静磁相互作用,取决于它们的间距,端部形状和宽度。随着电线的靠近,开关场的变化增加,观察到的与隔离电线的开关场的偏差最大为40%。变化的迹象取决于两条导线的相对磁化方向,较高的磁场用于平行磁化,较低的磁场用于反平行磁化。线端的形状会产生很大的影响,对于扁平端的线,其电场变化要比带有锥形端的线大。此处进行的微磁建模和实验在质量上吻合良好。使用静磁相互作用也证明了一条纳米线与另一根纳米线的开关行为的实验控制。

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