首页> 外文期刊>Journal of magnetism and magnetic materials >Layer-selective detection of magnetization directions from two layers of antiferromagnetically-coupled magnetizations by ferromagnetic resonance using a spin-torque oscillator
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Layer-selective detection of magnetization directions from two layers of antiferromagnetically-coupled magnetizations by ferromagnetic resonance using a spin-torque oscillator

机译:使用自旋转矩振荡器通过铁磁共振从两层反铁磁耦合磁化中进行磁化方向的层选择检测

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摘要

We use micromagnetic simulation to demonstrate layer-selective detection of magnetization directions from magnetic dots having two recording layers by using a spin-torque oscillator (STO) as a read device. This method is based on ferromagnetic resonance (FMR) excitation of recording-layer magnetizations by the microwave field from the STO. The FMR excitation affects the oscillation of the STO, which is utilized to sense the magnetization states in a recording layer. The recording layers are designed to have different FMR frequencies so that the FMR excitation is selectively induced by tuning the oscillation frequency of the STO. Since all magnetic layers interact with each other through dipolar fields, unnecessary interlayer interferences can occur, which are suppressed by designing magnetic properties of the layers. We move the STO over the magnetic dots, which models a read head moving over recording media, and show that changes in the STO oscillation occur on the one-nanosecond timescale.
机译:我们使用微磁模拟来演示通过使用自旋转矩振荡器(STO)作为读取设备,从具有两个记录层的磁点中进行磁化方向的层选择检测。该方法基于来自STO的微波场对记录层磁化强度的铁磁共振(FMR)激励。 FMR激发会影响STO的振荡,STO的振荡可用来感应记录层中的磁化状态。记录层设计为具有不同的FMR频率,以便通过调整STO的振荡频率有选择地引发FMR激励。由于所有磁性层都通过偶极场相互作用,因此可能发生不必要的层间干扰,这些干扰可以通过设计层的磁性能来抑制。我们将STO移到磁点上,该磁点模拟了在记录介质上移动的读取头,并显示出STO振荡的变化发生在1纳秒的时间尺度上。

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