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Engineering skyrmions in transition-metal multilayers for spintronics

机译:自旋电子学中过渡金属多层中的工程天sky

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摘要

Magnetic skyrmions are localized, topologically protected spin structures that have been proposed for storing or processing information due to their intriguing dynamical and transport properties. Important in terms of applications is the recent discovery of interface stabilized skyrmions as evidenced in ultra-thin transition-metal films. However, so far only skyrmions at interfaces with a single atomic layer of a magnetic material were reported, which greatly limits their potential for application in devices. Here we predict the emergence of skyrmions in [4d/Fe2/5d]n multilayers, that is, structures composed of Fe biatomic layers sandwiched between 4d and 5d transition-metal layers. In these composite structures, the exchange and the Dzyaloshinskii–Moriya interactions that control skyrmion formation can be tuned separately by the two interfaces. This allows engineering skyrmions as shown based on density functional theory and spin dynamics simulations.
机译:磁性天生离子是局部的,受拓扑保护的自旋结构,由于其吸引人的动态和传输特性,已被提议用于存储或处理信息。就应用而言,重要的是最近发现了界面稳定的天敌,这在超薄过渡金属膜中得到了证明。但是,到目前为止,仅报道了与磁性材料单原子层界面处的天体离子,这极大地限制了它们在设备中的应用潜力。在这里,我们预测[4d / Fe2 / 5d] n多层膜中出现了Skyrmion,即由夹在4d和5d过渡金属层之间的Fe双原子层组成的结构。在这些复合结构中,可以通过两个界面分别调节控制天丝形成的交换和Dzyaloshinskii-Moriya相互作用。这样可以根据密度泛函理论和自旋动力学模拟显示工程天窗。

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