论文标题

在混合铁磁/铁磁多层中观察到的独特的天空阶段的共存

Coexistence of distinct skyrmion phases observed in hybrid ferromagnetic/ferrimagnetic multilayers

论文作者

Mandru, Andrada-Oana, Yıldırım, Oğuz, Tomasello, Riccardo, Heistracher, Paul, Penedo, Marcos, Giordano, Anna, Suess, Dieter, Finocchio, Giovanni, Hug, Hans Josef

论文摘要

在室温下托管磁性天空的材料可以实现新的计算体系结构以及紧凑而有效的磁性存储(例如赛道记忆)。在赛道设备中,通过磁空形成通过设备移动的链的存在/不存在磁性天空来编码信息。例如,抗铁磁性耦合的天空阳性可以抑制天空般的天堂效应,该效应最终会导致赛马场边缘的天空灭绝。但是,避免赛车场中界限间距离的修改仍然具有挑战性。作为解决这个问题的解决方案,也可以通过两个不同的孤子来编码一系列位,例如Skyrmion和手性Bobber。这种方法的主要局限性是,它仅在B20型单晶材料系统中仅实现,该系统仅在低温下支持天空,从而阻碍了未来应用的功效。在这里,我们证明了混合铁/铁磁/铁磁多层系统可以在室温下容纳两个不同的天际阶段。通过将定量磁力显微镜数据与微磁模拟匹配,我们揭示了这两个阶段代表管状的天际和部分天空(类似于Skyrmion Bobbers)。此外,可以将管状的天空转化为部分天空。因此,这种多层系统可以用作使用不同类型的Skyrmions设计Skyrmion存储器应用程序的平台,并有可能在薄膜设备中使用垂直尺寸存储信息。

Materials hosting magnetic skyrmions at room temperature could enable new computing architectures as well as compact and energetically efficient magnetic storage such as racetrack memories. In a racetrack device, information is coded by the presence/absence of magnetic skyrmions forming a chain that is moved through the device. The skyrmion Hall effect that would eventually lead to an annihilation of the skyrmions at the edges of the racetrack can be suppressed for example by anti-ferromagnetically-coupled skyrmions. However, avoiding modifications of the inter-skyrmion distances in the racetrack remains challenging. As a solution to this issue, a chain of bits could also be encoded by two different solitons such as a skyrmion and a chiral bobber. The major limitation of this approach is that it has solely been realized in B20-type single crystalline material systems that support skyrmions only at low temperatures, thus hindering the efficacy for future applications. Here we demonstrate that a hybrid ferro/ferri/ferromagnetic multilayer system can host two distinct skyrmion phases at room temperature. By matching quantitative magnetic force microscopy data with micromagnetic simulations, we reveal that the two phases represent tubular skyrmions and partial skyrmions (similar to skyrmion bobbers). Furthermore, the tubular skyrmion can be converted into a partial skyrmion. Such multilayer systems may thus serve as a platform for designing skyrmion memory applications using distinct types of skyrmions and potentially for storing information using the vertical dimension in a thin film device.

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