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首页> 外文期刊>Physical review.B.Condensed matter and materials physics >Switching induced by spin Hall effect in an in-plane magnetized ferromagnet with the easy axis parallel to the current
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Switching induced by spin Hall effect in an in-plane magnetized ferromagnet with the easy axis parallel to the current

机译:通过旋转霍尔效应在平面内磁化铁磁体中诱导的切换,易轴平行于电流

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摘要

Magnetization switching in a fine-structured ferromagnet of nanoscale by the spin-transfer torque excited via the spin Hall effect has attracted much attention because it enables us to manipulate the magnetization without directly applying current to the ferromagnet. However, the switching mechanism is still unclear in regard to the ferromagnet having an in-plane easy axis parallel to the current. Here we develop an analytical theory of the magnetization switching in this type of ferromagnet. and reveal the threshold current formulas for a deterministic switching. It is clarified that the current should be in between a certain range determined by two threshold currents because the spin-transfer torque due to a large current outside the range brings the magnetization in an energetically unstable state, and causes magnetization precession around the hard axis.
机译:通过通过旋转霍尔效应激发的旋转转换扭矩在纳米级的微结构化的铁磁场中的磁化强化引起了很多关注,因为它使我们能够操纵磁化而不直接向铁磁体施加电流。然而,切换机构仍然不清楚的是,在具有平行于电流的平面内易轴的铁磁体上尚不清楚。在这里,我们在这种类型的铁磁体中开发了磁化切换的分析理论。并揭示用于确定性切换的阈值电流公式。阐明了电流应在由两个阈值电流确定的一定范围之间,因为由于该范围之外的大电流引起的自旋转移扭矩在高能量上不稳定的状态下使磁化强度引起,并且在硬轴上导致磁化预测。

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