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Experimental feasibility of spin-torque oscillator with synthetic field generation layer for microwave assisted magnetic recording

机译:微波辅助磁记录具有合成场生成层的自旋扭矩振荡器的实验性可行性

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摘要

We investigated the oscillation characteristics of a fabricated spin-lorque oscillator (STO) with a synthetic field generation layer (FGL) composed of the FGL and perpendicular anisotropy magnetic layer in microwave assisted magnetic recording (MAMR). The fabricated STO was composed of a perpendicularly magnetized reference layer/interlayer/synthetic-FGL. The STO with synthetic-FGL showed very narrow peaks caused by spin-torque oscillation. We also found oscillating frequency of the fabricated STO increased as the external field increased. This implies that the FGL magnetization rotates out-of-plane. Calculations by micromagnetic simulation were qualitatively consistent with the STO measurements. The calculated magnetization configurations in the synthetic-FGL formed a single domain but the one in the single-FGL formed multiple domains. This is one reason that the synthetic-FGL is estimated to generate a larger ac-field. In sum, we experimentally confirmed the effective oscillation of fabricated STO with a synthetic-FGL even with a thick FGL and its feasibility for high areal density in MAMR.
机译:我们用FGL组成的合成磁场产生层(FGL)和垂直辅助磁记录(MAMR)在微波各向异性磁性层调查了制造的旋lorque振荡器(STO)的振荡特性。制造的STO由垂直磁化的参考层/中间层/合成-FG1组成。具有合成-FGL的STO表示由旋转扭矩振荡引起的非常窄的峰。当外部场增加时,我们还发现制造的STO的振荡频率增加。这意味着FGL磁化强化旋转平面外。通过微磁性模拟的计算与STO测量值定性符合。在合成-FGL中计算出的磁化配置形成了单个域,但单个FGL中的一个形成多个域。这是估计合成-FGL的一个原因,以产生更大的交流场。总之,我们通过厚厚的FGL实验证实了具有合成-FGL的制造的STO的有效振荡,即MAMR中的高面积密度的可行性。

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