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How to transfer spins from the electric current to the ferromagnetic degree of freedom?

机译:如何将自旋从电流转移到铁磁自由度?

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摘要

We present the last developments of the approach of spin-transfer in terms of mesoscopic non-equilibrium thermodynamics. The modification of the ferromagnetic states due to the presence of a spin-accumulation process is investigated. The spin accumulation (also responsible for giant magnetoresistance) is generated by an electric current at the interfaces with a ferromagnetic nanostructure. The dynamical coupling that links the ferromagnetic degree of freedom to the spin of the conduction electrons is investigated with taking into account longitudinal and transverse spin accumulation. It seems that the coupling with the transverse spin-accumulation may be equivalent to the usual spin-transfer-torque mechanisms deduced from microscopic transmission- reflection coefficients at the interface. In contrast, the coupling with the longitudinal spin- accumulation generates fluctuations and seems to play important role in the activation process at larger time scales only.
机译:我们介绍了介观非平衡热力学方面自旋转移方法的最新进展。研究了由于自旋积累过程的存在而引起的铁磁态的改变。在具有铁磁纳米结构的界面处通过电流产生自旋累积(也导致巨大的磁阻)。考虑到纵向和横向自旋积累,研究了将铁磁自由度与传导电子的自旋联系起来的动力学耦合。看来,与横向自旋累积的耦合可能等效于从界面处的微观透射反射系数推导出的通常的自旋传递扭矩机制。相反,与纵向自旋积累的耦合会产生波动,并且似乎仅在较大的时间尺度上才在激活过程中发挥重要作用。

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