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Symmetry of spin orbit torque induced by impurities

机译:杂质引起的自旋轨道转矩的对称性

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Spin orbit torque (SOT) arises at the interfaces between ferromagnetic and heavy nonmagnetic metal layers once charge current flows parallel to the interfaces. SOT effect has attracted significant interest due to its potential applications for spin electronics. This effects originates from strong spin orbit coupling (SOC) of heavy 4d/5d elements and its mechanism is attributed either to the Spin Hall Effect (SHE) or Rashba Field Effect (RFE). Theoretical analysis shows that the SHE and RFE mechanisms responsible for correspondingly dominating field like (FLT) T = T (e×j) ×m and the damping like torques (DLT) T = Tm×((e×j) ×m) where e, j and m are the unit vectors in the directions of electric field gradient, current and magnetization respectively, as schematically shown on Fig. 1. However, recent experimental studies of SOT in Pt/Co/Ta heterostructures show that amplitudes of both torques have same order of magnitude and T is about two times larger than T. Moreover, both FLT and DLT amplitudes linearly increase with the thickness of Ta layer indicating a non-interface origin of FLT. These new experimental results once again raise question what is dominating mechanism and if interface plays any significant role in defining how strong is observed SOT effect.
机译:一旦充电电流平行于铁磁性和重金属非磁性层之间的界面产生自旋轨道转矩(SOT)。 SOT效应因其在自旋电子学中的潜在应用而引起了极大的兴趣。该效应源自重4d / 5d元素的强自旋轨道耦合(SOC),其机制归因于自旋霍尔效应(SHE)或拉什巴场效应(RFE)。理论分析表明,SHE和RFE机制分别负责控制像(FLT)T = T(e×j)×m的场和阻尼像扭矩(DLT)T = Tm×((e×j)×m)的控制场e,j和m分别是电场梯度,电流和磁化方向的单位矢量,如图1所示。但是,最近在Pt / Co / Ta异质结构中SOT的实验研究表明,两个转矩的幅度它们具有相同的数量级,并且T大约是T的两倍。而且,FLT和DLT幅度都随Ta层的厚度线性增加,表明FLT是非界面起源的。这些新的实验结果再次提出了一个问题,即主导机制是什么,以及界面在确定观察到的SOT强度方面是否起任何重要作用。

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