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A general perspective on the magnetization reversal in cylindrical soft magnetic nanowires with dominant shape anisotropy

机译:具有形状各向异性的圆柱形软磁纳米线中磁化反转的一般观点

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摘要

Peculiarities of the magnetization reversal process in cylindrical Ni-Cu soft magnetic nanowires with dominant shape anisotropy are analyzed via both static and time dependent micromagnetic simulations. A reversible process involving a coherent-like spin rotation is always observed for magnetic fields applied perpendicularly to the easy axis whereas nucleation of domain walls is introduced for fields applied along the easy axis. Simple criteria for making distinction between a Stoner-Wohlfarth type rotation and a nucleation mechanism in systems with uniaxial magnetic anisotropy are discussed. Superposed reversal mechanisms can be in action for magnetic fields applied at arbitrary angles with respect to the easy axis within the condition of an enough strong axial component required by the nucleation. The dynamics of the domain wall, involving two different stages (nucleation and propagation), is discussed with respect to initial computing conditions and orientations of the magnetic field. A nucleation time of about 3 ns and corkscrew domain walls propagating with a constant velocity of about 150 m/s are obtained in case of Ni-Cu alloy (Ni rich side) NWs with diameters of 40 nm and high aspect ratio.
机译:通过静态和时间相关的微磁模拟,分析了具有主要形状各向异性的圆柱形Ni-Cu软磁纳米线中磁化反转过程的特殊性。对于垂直于易轴施加的磁场,始终观察到可逆过程,包括相干自旋旋转,而沿易轴施加的场则引入了畴壁成核作用。讨论了在单轴磁各向异性的系统中区分斯托纳-沃尔法斯式旋转和成核机制的简单准则。在成核所需的足够强的轴向分量的条件下,叠加的反转机制可以作用于相对于易轴以任意角度施加的磁场。关于初始计算条件和磁场方向,讨论了涉及两个不同阶段(成核和传播)的畴壁动力学。在直径为40 nm且纵横比较高的Ni-Cu合金(富Ni侧)NW的情况下,可获得约3 ns的成核时间和以约150 m / s的恒定速度传播的螺旋状畴壁。

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