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Electrical injection of spin-polarized electrons and electrical detection of dynamic nuclear polarization using a Heusler alloy spin source

机译:使用Heusler合金自旋源电注入自旋极化电子并动态检测动态核极化

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摘要

We demonstrated electrical spin injection from a half-metallic Heusler alloy Co2MnSi electrode into a GaAs channel through observation of a spin-valve signal and a Hanle signal in the four-terminal nonlocal geometry. Furthermore, we electrically detected a nuclear field acting on electron spins, which was produced by the dynamic nuclear polarization, through observation of transient oblique Hanle signals. Samples with a Co2MnSi spin source exhibited higher spin-injection efficiency and a larger nuclear field compared to samples with a Co50Fe50 spin source, suggesting that the spin polarization of Co2MnSi is higher. This higher polarization is promising for realizing future spintronic devices and for understanding spin interactions as well as spin-dependent transport properties in a semiconductor channel.
机译:我们通过观察四端非局部几何结构中的自旋阀信号和Hanle信号,证明了从半金属Heusler合金Co2MnSi电极向GaAs通道进行电自旋注入。此外,我们通过观察瞬态倾斜Hanle信号,电检测到了作用于电子自旋的核场,该核场是由动态核极化产生的。与具有Co50Fe50自旋源的样品相比,具有Co2MnSi自旋源的样品表现出更高的自旋注入效率和更大的核场,这表明Co2MnSi自旋极化度更高。这种更高的极化有望用于实现未来的自旋电子器件,并有助于理解半导体通道中的自旋相互作用以及自旋相关的传输性质。

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