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A Comparative Study on Spin-Orbit Torque Efficiencies from W/Ferromagntic and W/Ferrimagnetic Heterostructures.

机译:W /铁磁性和W / Ferrimagnic杂交型旋转轨道扭矩效率的比较研究。

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It has been shown that W in its resistive form possesses the largest spin-Hall ratio among all heavy transition metals, which makes it a good candidate for generating efficient dampinglike spin-orbit torque (DL-SOT) acting upon adjacent ferromagnetic or ferrimagnetic (FM) layer. Here we provide a systematic study on the spin transport properties of W/FM magnetic heterostructures with the FM layer being ferromagnetic Co20 Fe60B20 or ferrimagnetic Co63 Tb37 with perpendicular magnetic anisotropy. The DL-SOT efficiency |ξDL|, which is characterized by a current-induced hysteresis loop shift method, is found to be correlated to the microstructure of W buffer layer in both W/Co20 Fe60B20 and W/Co63 Tb37 systems. Maximum values of |ξDL| ≈ 0.144 and |ξDL|≈ 0.1 are achieved when the W layer is partially amorphous in the W/Co20Fe60B20 and W/Co63Tb37 heterostructures, respectively. Our results suggest that the spin Hall effect from resistive phase of W can be utilized to effectively control both ferromagnetic and ferrimagnetic layers through a DL-SOT mechanism.
机译:已经表明,其电阻形式具有所有重型过渡金属中的最大的旋转霍尔比,这使得它使其成为发挥在相邻铁磁或铁磁性(FM)上作用的有效阻尼的旋转轨道扭矩(DL-SOT)的良好候选者) 层。在这里,我们对W / FM磁性异质结构的旋转运输性能提供了系统的系统研究,具有FM层是铁磁性CO 20 Fe. 60 B. 20 或ferrimagnetic co. 63 TB. 37 垂直磁各向异性。发现具有电流诱导的滞后环移位方法的DL-SOT效率|ξDL|,发现与W / CO之间的W缓冲层的微观结构相关联 20 Fe. 60 B. 20 和w / co 63 TB. 37 系统。最大值|ξdl|当W层在W / CO中是部分无定形的时,实现了≈0.144和|ξDL|≈0.144和|ξDL|≈0.1 20 Fe. 60 B. 20 和w / co 63 TB. 37 异质结构。我们的研究结果表明,W的电阻阶段的旋转霍尔效应可用于通过DL-SOT机制有效地控制铁磁性和亚铁磁性层。

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