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区分多段纳米线中局部退磁对磁化过程的贡献。

Distinguishing Local Demagnetization Contribution to the Magnetization Process in Multisegmented Nanowires.

作者信息

Marqués-Marchán Jorge, Fernandez-Roldan Jose Angel, Bran Cristina, Puttock Robert, Barton Craig, Moreno Julián A, Kosel Jürgen, Vazquez Manuel, Kazakova Olga, Chubykalo-Fesenko Oksana, Asenjo Agustina

机构信息

Instituto de Ciencia de Materiales de Madrid, CSIC, 28049 Madrid, Spain.

Helmholtz-Zentrum Dresden-Rossendorf e.V., Institute of Ion Beam Physics and Materials Research, 01328 Dresden, Germany.

出版信息

Nanomaterials (Basel). 2022 Jun 8;12(12):1968. doi: 10.3390/nano12121968.

Abstract

Cylindrical magnetic nanowires are promising materials that have the potential to be used in a wide range of applications. The versatility of these nanostructures is based on the tunability of their magnetic properties, which is achieved by appropriately selecting their composition and morphology. In addition, stochastic behavior has attracted attention in the development of neuromorphic devices relying on probabilistic magnetization switching. Here, we present a study of the magnetization reversal process in multisegmented CoNi/Cu nanowires. Nonstandard 2D magnetic maps, recorded under an in-plane magnetic field, produce datasets that correlate with magnetoresistance measurements and micromagnetic simulations. From this process, the contribution of the individual segments to the demagnetization process can be distinguished. The results show that the magnetization reversal in these nanowires does not occur through a single Barkhausen jump, but rather by multistep switching, as individual CoNi segments in the NW undergo a magnetization reversal. The existence of vortex states is confirmed by their footprint in the magnetoresistance and 2D MFM maps. In addition, the stochasticity of the magnetization reversal is analysed. On the one hand, we observe different switching fields among the segments due to a slight variation in geometrical parameters or magnetic anisotropy. On the other hand, the stochasticity is observed in a series of repetitions of the magnetization reversal processes for the same NW under the same conditions.

摘要

圆柱形磁性纳米线是很有前景的材料,有潜力用于广泛的应用中。这些纳米结构的多功能性基于其磁性能的可调性,这可通过适当选择其组成和形态来实现。此外,在依赖概率磁化切换的神经形态器件的发展中,随机行为引起了关注。在此,我们展示了对多段CoNi/Cu纳米线中磁化反转过程的研究。在面内磁场下记录的非标准二维磁图产生了与磁阻测量和微磁模拟相关的数据集。通过这个过程,可以区分各个段对退磁过程的贡献。结果表明,这些纳米线中的磁化反转不是通过单个巴克豪森跳跃发生的,而是通过多步切换,因为纳米线中的各个CoNi段经历了磁化反转。涡旋态的存在通过它们在磁阻和二维MFM图中的特征得以证实。此外,还分析了磁化反转的随机性。一方面,由于几何参数或磁各向异性的轻微变化,我们在各段之间观察到不同的切换场。另一方面,在相同条件下对同一纳米线的一系列磁化反转过程重复中观察到了随机性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dc7c/9229024/b55a09b9ec62/nanomaterials-12-01968-g001.jpg

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