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Current driven spin–orbit torque oscillator: ferromagnetic and antiferromagnetic coupling

机译:电流驱动的旋转轨道扭矩振荡器:铁磁和反铁磁耦合

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We consider theoretically the impact of Rashba spin-orbit coupling on spin torque oscillators (STOs) in synthetic ferromagnets and antiferromagnets that have either a bulk multilayer or a thin film structure. The synthetic magnets consist of a fixed polarizing layer and two free magnetic layers that interact through the Ruderman-Kittel-Kasuya-Yosida interaction. We determine analytically which collinear states along the easy axis that are stable, and establish numerically the phase diagram for when the system is in the STO mode and when collinear configurations are stable, respectively. It is found that the Rashba spin-orbit coupling can induce anti-damping in the vicinity of the collinear states, which assists the spin transfer torque in generating self-sustained oscillations, and that it can substantially increase the STO part of the phase diagram. Moreover, we find that the STO phase can extend deep into the antiferromagnetic regime in the presence of spin-orbit torques.
机译:理论上我们考虑了Rashba旋转轨道耦合对自旋扭矩振荡器(STO)在合成铁圆形型和薄膜结构的反铁磁体上的影响。合成磁体由固定偏振层和两个自由磁层组成,其通过Ruderman-Kittel-Kasuya-Yosida相互作用相互作用。我们在分析上确定了沿着稳定的容易轴线的共线状态,并在数值上建立了系统处于STO模式时的相图,并且当共线配置稳定时。结果发现,Rashba旋转轨道耦合可以诱导在共线状态附近的反阻尼,这有助于产生自持续振荡时的自旋转移扭矩,并且它可以基本上增加相图的STO部分。此外,我们发现STO相可以在旋转轨道扭矩存在下深入反铁磁体制度。

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