论文标题

过渡金属二北元素/铁磁化异质结构中的自旋轨道扭矩

Spin-Orbit Torques in Transition Metal Dichalcogenide/Ferromagnet Heterostructures

论文作者

Hidding, Jan, Guimarães, Marcos H. D.

论文摘要

近年来,人们对旋转轨道扭矩(SOT)的兴趣越来越大,以操纵非挥发性磁性记忆设备的磁化。 SOT依靠与铁磁层耦合的非磁性材料的自旋轨道耦合将施加的电荷电流转换为Ferromagnet(FM)磁化的扭矩。过渡金属二分法(TMDS)是有希望的候选者,用于产生这些扭矩,具有高电荷与旋转转换率,以及有效的磁化操作的对称性和方向。此外,TMD具有广泛的吸引力,例如大型自旋轨道耦合,高晶体质量和多样的晶体对称性。尽管使用TMD/FM异质结构发表了许多有关SOT的研究,但我们对观察到的SOT对称性,方向和优势缺乏明确的了解。为了阐明文献中的作品之间的差异和相似性,在此迷你审查中,我们比较了各种TMD/FM设备的结果,突出了用于制造设备并量化SOTS的实验技术,讨论了它们对界面质量的潜在影响,并进行了SOT。这使我们能够确定特定制造步骤对观察到的SOT对称性和方向的影响,并为其潜在的微观机制提供建议。此外,我们强调了使用TMD异质结构在SOT上进行理论工作的最新进展,并提出了未来的研究方向。

In recent years, there has been a growing interest in spin-orbit torques (SOTs) for manipulating the magnetization in nonvolatile magnetic memory devices. SOTs rely on the spin-orbit coupling of a nonmagnetic material coupled to a ferromagnetic layer to convert an applied charge current into a torque on the magnetization of the ferromagnet (FM). Transition metal dichalcogenides (TMDs) are promising candidates for generating these torques with both high charge-to-spin conversion ratios, and symmetries and directions which are efficient for magnetization manipulation. Moreover, TMDs offer a wide range of attractive properties, such as large spin-orbit coupling, high crystalline quality and diverse crystalline symmetries. Although numerous studies were published on SOTs using TMD/FM heterostructures, we lack clear understanding of the observed SOT symmetries, directions, and strengths. In order to shine some light on the differences and similarities among the works in literature, in this mini-review we compare the results for various TMD/FM devices, highlighting the experimental techniques used to fabricate the devices and to quantify the SOTs, discussing their potential effect on the interface quality and resulting SOTs. This enables us to both identify the impact of particular fabrication steps on the observed SOT symmetries and directions, and give suggestions for their underlying microscopic mechanisms. Furthermore, we highlight recent progress of the theoretical work on SOTs using TMD heterostructures and propose future research directions.

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