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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Current-induced magnetization dynamics in single and double layer magnetic nanopillars grown by molecular beam epitaxy
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Current-induced magnetization dynamics in single and double layer magnetic nanopillars grown by molecular beam epitaxy

机译:分子束外延生长的单层和双层磁性纳米柱的电流诱导磁化动力学

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摘要

Molecular beam epitaxy is used to fabricate magnetic single and double layer junctions, which are deposited in prefabricated nanostencil masks. For all Co | Cu | Co double layer junctions we observe a stable intermediate resistance state, which can be reached by current starting from the parallel configuration of the respective ferromagnetic layers. The generation of spin waves is investigated at room temperature in the frequency domain by spectrum analysis, demonstrating both in-plane and out-of-plane precessions of the magnetization of the free magnetic layer. Current-induced magnetization dynamics in magnetic single layer junctions of Cu | Cu | Cu has been investigated in magnetic fields, which are applied perpendicular to the magnetic layer. We find a hysteretic switching in the current sweeps with resistance changes significantly larger than the anisotropic magnetoresistance effect.
机译:分子束外延用于制造磁性单层和双层结,这些结沉积在预制的纳米模板掩模中。对于所有公司|铜|在双层Co结中,我们观察到了稳定的中间电阻状态,可以通过从各个铁磁层的平行配置开始的电流来达到该状态。通过频谱分析在室温下在频域中研究了自旋波的产生,展示了自由磁性层磁化的面内和面外进动。 Cu |单层磁性结中的电流感应磁化动力学铜|已经在垂直于磁性层施加的磁场中研究了Cu。我们发现电流扫描中的磁滞开关的电阻变化远大于各向异性磁阻效应。

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