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Multifunctional oxides for topological magnetic textures by design

机译:设计拓扑磁性纹理的多功能氧化物

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摘要

Several challenges in designing an operational skyrmion racetrack memory are well known. Among those challenges, a few contradictions can be identified if researchers are to rely only on metallic materials. Hence, expanding the exploration of skyrmion physics into oxide materials is essential to bridge the contradicting gap. In this topical review, we first briefly revise the theories and criteria involved in stabilizing and manipulating skyrmions, followed by studying the behaviors of dipolar-stabilized magnetic bubbles. Next, we explore the properties of multiferroic skyrmions with magnetoelectric coupling, which can only be stabilized in Cu2OSeO3 thus far, as well as the rare bulk Neel-type skyrmions in some polar materials. As an interlude section, we review the theory of the anomalous and topological Hall effect (THE), before going through the recent progress of THE in oxide thin films. The debate about an alternative interpretation is also discussed. Finally, this review ends with a future outlook regarding the promising strategies of using interfacial charge transfer and (111)-orientation of perovskites to benefit the field of skyrmion research.
机译:众所周知,在设计可操作的skyrmion赛道内存时,有几个挑战是众所周知的。在这些挑战中,如果研究人员只依赖金属材料,可以发现一些矛盾。因此,将skyrmion物理学的探索扩展到氧化物材料是弥合这一矛盾鸿沟的关键。在这篇专题综述中,我们首先简要修订了稳定和操纵Skyrmion所涉及的理论和标准,然后研究了偶极稳定磁泡的行为。接下来,我们探索了目前只能在Cu2OSeO3中稳定的具有磁电耦合的多铁性Skyrmion的性质,以及一些极性材料中罕见的大块Neel型Skyrmion。作为中间部分,我们回顾了反常和拓扑霍尔效应(the)的理论,然后介绍了in氧化物薄膜的最新进展。还讨论了关于替代解释的辩论。最后,本文对利用钙钛矿的界面电荷转移和(111)取向来促进skyrmion研究领域的前景进行了展望。

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