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人工“风车”自旋冰中的超铁磁性与畴壁拓扑结构

Superferromagnetism and Domain-Wall Topologies in Artificial "Pinwheel" Spin Ice.

作者信息

Li Yue, Paterson Gary W, Macauley Gavin M, Nascimento Fabio S, Ferguson Ciaran, Morley Sophie A, Rosamond Mark C, Linfield Edmund H, MacLaren Donald A, Macêdo Rair, Marrows Christopher H, McVitie Stephen, Stamps Robert L

机构信息

SUPA, School of Physics and Astronomy , University of Glasgow , Glasgow G12 8QQ , United Kingdom.

Departamento de Física , Universidade Federal de Viçosa , Viçosa 36570-900 , Minas Gerais , Brazil.

出版信息

ACS Nano. 2019 Feb 26;13(2):2213-2222. doi: 10.1021/acsnano.8b08884. Epub 2019 Jan 15.

Abstract

For over ten years, arrays of interacting single-domain nanomagnets, referred to as artificial spin ices, have been engineered with the aim to study frustration in model spin systems. Here, we use Fresnel imaging to study the reversal process in "pinwheel" artificial spin ice, a modified square ASI structure obtained by rotating each island by some angle about its midpoint. Our results demonstrate that a simple 45° rotation changes the magnetic ordering from antiferromagnetic to ferromagnetic, creating a superferromagnet which exhibits mesoscopic domain growth mediated by domain wall nucleation and coherent domain propagation. We observe several domain-wall configurations, most of which are direct analogues to those seen in continuous ferromagnetic films. However, charged walls also appear due to the geometric constraints of the system. Changing the orientation of the external magnetic field allows control of the nature of the spin reversal with the emergence of either one- or two-dimensional avalanches. This property of pinwheel ASI could be employed to tune devices based on magnetotransport phenomena such as Hall circuits.

摘要

十多年来,人们一直在设计相互作用的单畴纳米磁体阵列,即所谓的人工自旋冰,目的是研究模型自旋系统中的阻挫现象。在此,我们使用菲涅耳成像技术来研究“风车”人工自旋冰中的反转过程,这是一种通过将每个岛围绕其中心点旋转一定角度而获得的改良方形人工自旋冰结构。我们的结果表明,简单的45°旋转会将磁序从反铁磁变为铁磁,从而形成一种超铁磁体,它表现出由畴壁成核和相干畴传播介导的介观畴生长。我们观察到几种畴壁构型,其中大多数与连续铁磁薄膜中看到的构型直接类似。然而,由于系统的几何约束,带电壁也会出现。改变外部磁场的方向可以控制自旋反转的性质,出现一维或二维雪崩。风车人工自旋冰的这一特性可用于基于磁输运现象(如霍尔电路)来调整器件。

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