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Determining spin-torque efficiency in ferromagnetic metals via spin-torque ferromagnetic resonance

机译:通过旋转扭矩铁磁共振确定铁磁金属中的旋转扭矩效率

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摘要

Spin current generated in a ferromagnetic metal (FM) can be divided into two types. While one is magnetization dependent and induced by the well-known anomalous Hall effect, the other is a magnetization-independent spin Hall effect which is similar to that in a paramagnetic heavy metal (HM). Here, we study the magnetization-independent spin Hall current in YIG/FM (NiFe and CoFeB) via spin-torque ferromagnetic resonance (ST-FMR) technique. Our experiments reveal the existence of a magnetization-independent spin current. Although there is a strong exchange interaction in FM, the spin current does not dephase as quickly as expected. Furthermore, we estimate the spin-torque efficiency xi of NiFe was 0.009, which is about 25% of the spin-torque efficiency of Pt. These results indicate that the spin Hall effect of FM should also be taken into account when investigating FM/HM heterostructures, and furthermore this effect can also benefit from the development of spin-orbit torque devices.
机译:在铁磁金属(FM)中产生的旋转电流可分为两种类型。 虽然一个是依赖于偏心的磁化和众所周知的异常霍尔效应,但另一个是磁化无关的旋转霍尔效果,其类似于顺磁性重金属(HM)。 在这里,我们通过旋转扭矩铁磁体谐振(ST-FMR)技术研究了磁化无关的旋转霍流电流(NIFE和CoFeB)。 我们的实验揭示了磁化无关的旋转电流的存在。 虽然FM中存在强大的交换相互作用,但旋转电流不会随所预期的快速消失。 此外,我们估计nife的旋转扭矩效率为0.009,其距离Pt的旋转扭矩效率的约25%。 这些结果表明,在研究FM / HM异质结构时,还应考虑FM的旋转霍尔效应,此外,这种效果也可以从旋转轨道扭矩装置的开发中受益。

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