论文标题

创建和确认磁性多层系统中的跳跃

Creation and confirmation of Hopfions in magnetic multilayer systems

论文作者

Kent, N., Reynolds, N., Raftrey, D., Campbell, I. T. G., Virasawmy, S., Dhuey, S., Chopdekar, R. V., Hierro-Rodriguez, A., Sorrentino, A., Pereiro, E., Ferrer, S., Hellman, F., Sutcliffe, P., Fischer, P.

论文摘要

在古典田地理论中已经研究了数十年的拓扑孤子,并且最近开始影响冷凝物理物理学。在这些孤子中,磁性天空是二维粒子样物体,具有连续的磁化绕组,而磁跳是三维拓扑台词,可以从扭曲的天空丝线的封闭环中形成。尽管正在进行激烈的研究,但磁性天空源于高级存储和逻辑设备中的基本理解和潜在应用,但到目前为止,磁跳的实验创造和确认是难以捉摸的。理论模型表明,可以在沮丧或手性的磁系统中稳定跳跃,并且可以通过调整其垂直磁各向异性来将目标滑雪物转化为跳跃。在这里,我们提供了在磁性IR/CO/PT多层中产生的磁性跳跃的实验证据,这些磁性磁盘已知纳米级磁盘,众所周知,这些磁盘构成了目标天空。三维自旋纹理通过将两种先进的元素特异性磁性X射线显微镜技术与大约20-30nm的横向分辨率相结合,从而将磁性跳跃与目标天空区分开,并使用X射线磁性圆形二色症将磁性隔离式效应与表面敏感的X-RAY光学电子显微镜和Bullk-Syromcy Soft X-Ray敏感X-RAY X-Ray X-Ray效应。我们预计,这些结果将刺激对不同拓扑的跳跃及其在三维旋转设备中的潜在应用的进一步研究。

Topological solitons have been studied for decades in classical field theories, and have started recently to impact condensed matter physics. Among those solitons, magnetic skyrmions are two-dimensional particle-like objects with a continuous winding of the magnetization, and magnetic Hopfions are three-dimensional topological solitons that can be formed from a closed loop of a twisted skyrmion string. Whereas intense research is underway with magnetic skyrmions towards a fundamental understanding and potential applications in advanced storage and logic devices, the experimental creation and confirmation of magnetic Hopfions has been elusive so far. Theoretical models suggest that Hopfions can be stabilized in frustrated or chiral magnetic systems, and that target skymions can be transformed into Hopfions by adapting their perpendicular magnetic anisotropy. Here, we present experimental evidence of magnetic Hopfions that were created in magnetic Ir/Co/Pt multilayers shaped into nanoscale disks, which are known to host target skyrmions. The three-dimensional spin texture, which distinguishes magnetic Hopfions from target skyrmions was confirmed by combining two advanced element-specific magnetic X-ray microscopy techniques with about 20-30nm lateral resolution, using X-ray magnetic circular dichroism effect as magnetic contrast mechanism in surface-sensitive X-ray photoemission electron microscopy and bulk-sensitive soft x-ray transmission microscopy. We anticipate that these results will stimulate further investigations of Hopfions with different topologies and their potential application in three-dimensional spintronics devices.

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