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Size driven barrier to chirality reversal in electric control of magnetic vortices in ferromagnetic nanodiscs

机译:铁磁纳米盘磁涡电控制中手性反转的尺寸驱动势垒

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摘要

New high density storage media and spintronic devices come about with a progressing demand for the miniaturization of ferromagnetic structures. Vortex ordering of magnetic dipoles in such structures has been repeatedly observed as a stable state, offering the possibility of chirality in these states as a means to store information at high density. Electric pulses and magnetoelectric coupling are attractive options to control the chirality of such states in a deterministic manner. Here, we demonstrate the chirality reversal of vortex states in ferromagnetic nanodiscs via pulsed electric fields using a micromagnetic approach and focus on the analysis of the energetics of the reversal process. A strong thickness dependence of the chirality reversal in the nanodiscs is found that emanates from the anisotropy of the demagnetizing fields. Our results indicate that chiral switching of the magnetic moments in thin discs can give rise to a transient vortex-antivortex lattice not observed in thicker discs. This difference in the chirality reversal mechanism emanates from profoundly different energy barriers to overcome in thin and thicker discs. We also report the polarity-chirality correlation of a vortex that appears to depend on the aspect ratio of the nanodiscs.
机译:新的高密度存储媒体和自旋电子设备是进步的需求铁磁结构的小型化。涡流磁偶极子在这样的命令一再观察作为一个结构稳定的状态,提供的可能性手性在这些州对存储在高密度的信息。磁电耦合有吸引力的选择控制这些国家的手性确定的方式。手性逆转漩涡的国家铁磁nanodiscs通过脉冲电字段使用微磁方法和重点在分析能量的逆转的过程。手性逆转nanodiscs发现源自消磁的各向异性字段。切换的磁矩薄圆盘可以产生一个瞬态vortex-antivortex吗晶格不厚的光盘中观察到。不同手性逆转机制源自截然不同的能量薄的和厚的光盘的障碍要克服。我们也报告polarity-chirality相关性的漩涡似乎取决于方面nanodiscs的比率。

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