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Dual Control of Giant Field-Like Spin Torque in Spin Filter Tunnel Junction

机译:自旋过滤器隧道结中超大自旋转矩的双重控制

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Recent discoveries in the ferromagnet/insulator/ferromagnet (FM/I/FM) magnetic tunnel junctions (MTJs) have demonstrated that the relative orientation of the two FM electrodes can be either altered by an external magnetic field, i.e. the tunneling magnetoresistance (TMR) effect, or controlled by a spin-polarized current, i.e. the current-induced magnetization reversal via the spin transfer torque (STT) effect. The spin-transfer,n$text{T}_{Vert}$n, and field-like,n$text{T}_{perp}$n, components of the STT originate from different components of the spin current accumulated at the FM/I interface and can be expressed in terms of the interplay of spin current densities and of the non-equilibrium interlayer exchange couplings [1], respectively, solely in collinear configurations.
机译:铁磁体/绝缘体/铁磁体(FM / I / FM)磁性隧道结(MTJ)的最新发现表明,两个FM电极的相对方向可以通过外部磁场来改变,即隧道磁阻(TMR)或受自旋极化电流控制,即通过自旋传递转矩(STT)效应引起的电流感应磁化反转。自旋转移,n $ text {T} _ {Vert} $ n和类似字段的n $ text {T} _ {perp} $ n,STT的分量源自在FM / I接口上积累的自旋电流的不同分量,并且可以单独地在共线配置中分别用自旋电流密度和非平衡层间交换耦合[1]的相互作用来表示。

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