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Spin-Polarized Current Switching of Co/Cu/Py Elongated Pac-Man Spin-Valve

机译:Co / Cu / Py细长的Pac-Man自旋阀的自旋极化电流开关

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摘要

We investigated spin-polarized current switching of elongated Pac-man (EPM) elements in a Pac-man shaped spin valve (Co/Cu/Py). The aspect ratio, pulse duration, and effect of antiferromagnetic (AFM) layer were simulated to obtain coherent switching. Pulse duration was varied on the picosecond (ps) scale and showed that ultra-fast switching could be achieved. A critical aspect ratio of 4.2 was found, where a minimum current density was observed. For antiparallel to parallel (AP-P) switching, a vortex formed during the switching process for aspect ratios less than 7. Aspect ratios of 7 or higher did not form a vortex and showed similar current densities to parallel to antiparallel (P-AP) switching as a result. It was found that the AFM layer prevented the formation of a vortex at the critical aspect ratio of 4.2 and effectively changed the switching mechanism. This allowed coherent switching with current densities for AP-P and P-AP to be only 7% from each other at the aspect ratio of 4.2.
机译:我们研究了在Pac-man型旋转阀(Co / Cu / Py)中拉长的Pac-man(EPM)元件的自旋极化电流开关。模拟长宽比,脉冲持续时间和反铁磁(AFM)层的效果以获得相干切换。脉冲持续时间在皮秒(ps)范围内变化,表明可以实现超快速切换。发现临界纵横比为4.2,其中观察到最小电流密度。对于反平行(AP-P)开关,在开关过程中形成的涡流的纵横比小于7。纵横比为7或更高时不会形成涡流,并且显示出与平行反平行(P-AP)相似的电流密度结果切换。已经发现,AFM层防止了在4.2的临界纵横比下形成涡流并有效地改变了切换机制。这使得在4.2的纵横比下,AP-P和P-AP的电流密度相干切换仅为7%。

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