论文标题

在两端纳米线设备中的有针对性写入和删除磁性的磁性

Targeted Writing and Deleting of Magnetic Skyrmions in Two-Terminal Nanowire Devices

论文作者

Je, Soong-Geun, Thian, Dickson, Chen, Xiaoye, Huang, Lisen, Jung, Dae-Han, Chao, Weilun, Lee, Ki-Suk, Hong, Jung-Il, Soumyanarayanan, Anjan, Im, Mi-Young

论文摘要

纳米级磁空的可控写作和删除是其用作下一代内存和计算技术的信息载体的关键要求。尽管已经提出了几种方案,但它们需要复杂的制造技术或精确量身定制的电输入,这限制了其长期可扩展性。在这里,我们演示了一种在简单的两端线几何形状中使用常规的电脉冲编写和删除天空的替代方法。 X射线显微镜实验和微磁模拟分别建立了观察到的Skyrmion创造和an灭,这是由于当前脉冲的焦耳加热和Oerst的田间效应引起的。这些写作和删除方案的独特特征,例如空间和时间选择性,以及2端设备体系结构的简单性,为天空的可行应用提供了灵活且可扩展的途径。

Controllable writing and deleting of nanoscale magnetic skyrmions are key requirements for their use as information carriers for next-generation memory and computing technologies. While several schemes have been proposed, they require complex fabrication techniques or precisely tailored electrical inputs, which limits their long-term scalability. Here we demonstrate an alternative approach for writing and deleting skyrmions using conventional electrical pulses within a simple, two-terminal wire geometry. X-ray microscopy experiments and micromagnetic simulations establish the observed skyrmion creation and annihilation as arising from Joule heating and Oersted field effects of the current pulses, respectively. The unique characteristics of these writing and deleting schemes, such as spatial and temporal selectivity, together with the simplicity of the 2-terminal device architecture, provide a flexible and scalable route to the viable applications of skyrmions.

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