论文标题
纳米级磁性域记忆
Nanoscale Magnetic Domain Memory
论文作者
论文摘要
磁性域存储器(MDM)是某些磁性材料表现出的能力,即使在外部磁场完全擦除后,也可以重现完全相同的纳米级磁性域模式。在本章中,我们回顾了这种异常现象发生的各种情况。我们解释了如何在结构缺陷的垂直磁化的粗糙CO/PT多层中首次观察到部分MDM。然后,我们通过将CO/PD多层耦合到通过交换相互作用将CO/PD多层耦合到反铁磁IRMN模板中,即使在平滑的铁磁膜中也如何实现100%的MDM。我们描述了在零场对其封闭温度以下的材料冷却材料时,在发生交换耦合的情况下,将获得较高的MDM,从而延伸了几乎整个磁化过程。我们还通过场循环回顾了MDM的持久性,并在将材料一直升至阻塞温度时。此外,我们讨论了MDM的空间依赖性,突出了有趣的振荡行为,表明纳米镜尺度下的磁相关性和旋转对称性。最后,我们回顾了MDM对冷却条件的依赖性,并通过调整冷却场的大小来揭示如何完全控制,打开和关闭MDM。
Magnetic domain memory (MDM) is the ability exhibited by certain magnetic materials to reproduce the exact same nanoscale magnetic domain pattern, even after it has been completely erased by an external magnetic field. In this chapter, we review the various circumstances under which this unusual phenomenon occurs. We explain how partial MDM was first observed in rough Co/Pt multilayers with perpendicular magnetization as a result of structural defects. We then show how 100 % MDM was achieved, even in smooth ferromagnetic films, by coupling Co/Pd multilayers to an antiferromagnetic IrMn template via exchange interactions. We describe how high MDM, extending through-out nearly the entirety of the magnetization process, is obtained when zero-field-cooling the material below its blocking temperature where exchange couplings occur. We also review the persistence of MDM through field cycling and while warming the material all the way up to the blocking temperature. Additionally, we discuss the spatial dependence of MDM, highlighting intriguing oscillatory behaviors suggesting magnetic correlations and rotational symmetries at the nanoscopic scales. Finally, we review the dependence of MDM on cooling conditions, revealing how MDM can be fully controlled, turned on and off, by adjusting the magnitude of the cooling field.