Houssameddine D, Ebels U, Delaët B, Rodmacq B, Firastrau I, Ponthenier F, Brunet M, Thirion C, Michel J-P, Prejbeanu-Buda L, Cyrille M-C, Redon O, Dieny B
SPINTEC URA 2512, C.E.A/DRFMC-CNRS, Commissariat á l'Energie Atomique-Grenoble, 17 rue des Martyrs, 38054 Grenoble, France.
Nat Mater. 2007 Jun;6(6):441-7. doi: 10.1038/nmat1905. Epub 2007 Apr 29.
Spintronics materials have recently been considered for radio-frequency devices such as oscillators by exploiting the transfer of spin angular momentum between a spin-polarized electrical current and the magnetic nanostructure it passes through. While previous spin-transfer oscillators (STOs) were based on in-plane magnetized structures, here we present the realization of an STO that contains a perpendicular spin current polarizer combined with an in-plane magnetized free layer. This device is characterized by high-frequency oscillations of the free-layer magnetization, consistent with out-of-plane steady-state precessions induced at the threshold current by a spin-transfer torque from perpendicularly polarized electrons. The results are summarized in static and dynamic current-field state diagrams and will be of importance for the design of STOs with enhanced output signals.
近期,自旋电子学材料已被考虑用于诸如振荡器等射频设备,其原理是利用自旋极化电流与它所穿过的磁性纳米结构之间的自旋角动量转移。虽然此前的自旋转移振荡器(STO)基于面内磁化结构,但在此我们展示了一种包含垂直自旋电流偏振器与面内磁化自由层相结合的STO的实现。该器件的特征在于自由层磁化的高频振荡,这与由垂直极化电子的自旋转移力矩在阈值电流下诱导的面外稳态进动相一致。结果总结在静态和动态电流-场状态图中,对于设计具有增强输出信号的STO具有重要意义。