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Electrical detection of spin pumping: dc voltage generated by ferromagnetic resonance at ferromagnetonmagnet contact

机译:自旋泵的电气检测:铁磁体/非磁体接触处的铁磁共振产生的直流电压

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摘要

We describe electrical detection of spin pumping in metallic nanostructures. In the spin pumping effect, a precessing ferromagnet attached to a normal metal acts as a pump of spin-polarized current, giving rise to a spin accumulation. The resulting spin accumulation induces a backflow of spin current into the ferromagnet and generates a dc voltage due to the spin dependent conductivities of the ferromagnet. The magnitude of such voltage is proportional to the spin-relaxation properties of the normal metal. By using platinum as a contact material we observe, in agreement with theory, that the voltage is significantly reduced as compared to the case when aluminum was used. Furthermore, the effects of rectification between the circulating rf currents and the magnetization precession of the ferromagnet are examined. Most significantly, we show that using an improved layout device geometry, these effects can be minimized.
机译:我们描述了金属纳米结构中自旋泵的电学检测。在自旋泵浦效应中,附着在普通金属上的进动铁磁体充当自旋极化电流的泵浦,从而引起自旋累积。所产生的自旋累积引起自旋电流回流到铁磁体中,并且由于铁磁体的自旋相关电导率而产生直流电压。这种电压的大小与普通金属的自旋松弛特性成正比。通过使用铂作为接触材料,根据理论,我们观察到与使用铝的情况相比,电压显着降低。此外,研究了循环射频电流之间的整流作用和铁磁体的磁化进动。最重要的是,我们表明,使用改进的布局设备几何形状,可以将这些影响最小化。

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