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源于非本征散射的五维过渡金属-铝合金中的巨自旋霍尔效应和自旋轨道转矩

Giant Spin Hall Effect and Spin-Orbit Torques in 5d Transition Metal-Aluminum Alloys from Extrinsic Scattering.

作者信息

Wang Peng, Migliorini Andrea, Yang See-Hun, Jeon Jae-Chun, Kostanovskiy Ilya, Meyerheim Holger, Han Hyeon, Deniz Hakan, Parkin Stuart S P

机构信息

Max Planck Institute for Microstructure Physics, 06120, Halle, Germany.

Institute of Physics, Martin Luther University Halle-Wittenberg, 06120, Halle, Germany.

出版信息

Adv Mater. 2022 Jun;34(23):e2109406. doi: 10.1002/adma.202109406. Epub 2022 May 2.

Abstract

The generation of spin currents from charge currents via the spin Hall effect (SHE) is of fundamental and technological interest. Here, some of the largest SHEs yet observed via extrinsic scattering are found in a large class of binary compounds formed from a 5d element and aluminum, with a giant spin Hall angle (SHA) of ≈1 in the compound Os Al . A critical composition of the 5d element is found at which there is a structural phase boundary between poorly and highly textured crystalline material, where the SHA exhibits its largest value. Furthermore, a systematic increase is found in the spin Hall conductivity (SHC) and SHA at this critical composition as the atomic number of the 5d element is systematically increased. This clearly shows that the SHE and SHC are derived from extrinsic scattering mechanisms related to the potential mismatch between the 5d element and Al. These studies show the importance of extrinsic mechanisms derived from potential mismatch as a route to obtaining large spin Hall angles with high technological impact. Indeed, it is demonstrated that a state-of-the-art racetrack device has a several-fold increased current-induced domain wall efficiency using these materials as compared to prior-art materials.

摘要

通过自旋霍尔效应(SHE)从电荷电流产生自旋电流具有重要的基础研究意义和技术应用价值。在此,通过外在散射观测到的一些最大的自旋霍尔效应存在于一大类由5d元素与铝形成的二元化合物中,在化合物OsAl中具有约为1的巨大自旋霍尔角(SHA)。发现5d元素存在一个关键组成,在该组成下,低织构和高织构晶体材料之间存在结构相界,此时自旋霍尔角呈现最大值。此外,随着5d元素原子序数的系统增加,在这个关键组成下自旋霍尔电导率(SHC)和自旋霍尔角都出现系统性增加。这清楚地表明,自旋霍尔效应和自旋霍尔电导率源自与5d元素和铝之间势失配相关的外在散射机制。这些研究表明,源自势失配的外在机制作为获得具有高技术影响力的大自旋霍尔角的途径具有重要意义。实际上,已证明与现有技术材料相比,使用这些材料的最先进的跑道式器件的电流诱导畴壁效率提高了数倍。

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