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铱/铁/钴/铂多层膜中可调控的室温磁性斯格明子

Tunable room-temperature magnetic skyrmions in Ir/Fe/Co/Pt multilayers.

作者信息

Soumyanarayanan Anjan, Raju M, Gonzalez Oyarce A L, Tan Anthony K C, Im Mi-Young, Petrović A P, Ho Pin, Khoo K H, Tran M, Gan C K, Ernult F, Panagopoulos C

机构信息

Data Storage Institute, 2 Fusionopolis Way, 138634, Singapore.

Division of Physics and Applied Physics, School of Physical and Mathematical Sciences, Nanyang Technological University, 637371, Singapore.

出版信息

Nat Mater. 2017 Sep;16(9):898-904. doi: 10.1038/nmat4934. Epub 2017 Jul 17.

Abstract

Magnetic skyrmions are nanoscale topological spin structures offering great promise for next-generation information storage technologies. The recent discovery of sub-100-nm room-temperature (RT) skyrmions in several multilayer films has triggered vigorous efforts to modulate their physical properties for their use in devices. Here we present a tunable RT skyrmion platform based on multilayer stacks of Ir/Fe/Co/Pt, which we study using X-ray microscopy, magnetic force microscopy and Hall transport techniques. By varying the ferromagnetic layer composition, we can tailor the magnetic interactions governing skyrmion properties, thereby tuning their thermodynamic stability parameter by an order of magnitude. The skyrmions exhibit a smooth crossover between isolated (metastable) and disordered lattice configurations across samples, while their size and density can be tuned by factors of two and ten, respectively. We thus establish a platform for investigating functional sub-50-nm RT skyrmions, pointing towards the development of skyrmion-based memory devices.

摘要

磁斯格明子是纳米级拓扑自旋结构,为下一代信息存储技术带来了巨大希望。最近在几种多层薄膜中发现了尺寸小于100纳米的室温斯格明子,这引发了人们为将其物理性质用于器件而进行的积极努力。在此,我们展示了一种基于Ir/Fe/Co/Pt多层堆叠的可调室温斯格明子平台,我们使用X射线显微镜、磁力显微镜和霍尔输运技术对其进行研究。通过改变铁磁层成分,我们可以调整控制斯格明子性质的磁相互作用,从而将其热力学稳定性参数调整一个数量级。斯格明子在整个样品中呈现出孤立(亚稳态)和无序晶格构型之间的平滑转变,而它们的尺寸和密度可分别调整两倍和十倍。因此,我们建立了一个用于研究功能性亚50纳米室温斯格明子的平台,为基于斯格明子的存储器件的发展指明了方向。

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