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Detrimental Effects of the STO Vertical Field Component in MAMR

机译:MAMR中STO垂直场分量的有害影响

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摘要

Microwave-assisted magnetic recording (MAMR) employs a spin-torque oscillator (STO) to assist a standard magnetic writer field in switching grains of a magnetic recording medium. The STO field has different polarization angles at different positions, resulting in different mixes of in-media-plane and out-of-media-plane (vertical) field components. We find that the vertical component of the STO field degrades the writing process, increasing jitter, decreasing low-frequency signal-to-noise ratio, decreasing magnetic write width, and decreasing areal density capability. This is not due to postwrite erasure, but rather is part of the write process itself. Simple vector considerations illuminate the cause for this degradation. Consequently, experimental and modeling approaches that estimate MAMR switching-field reduction using only in-media-plane oscillating fields will erroneously overestimate the impact of the ac fields in the magnetic recording process.
机译:微波辅助磁记录(MAMR)采用自旋转矩振荡器(STO)来辅助标准磁写入器场切换磁记录介质的颗粒。 STO场在不同位置具有不同的偏振角,导致媒体平面内和媒体平面外(垂直)场分量的混合不同。我们发现,STO场的垂直分量会降低写入过程的性能,增加抖动,降低低频信噪比,减小磁写入宽度以及减小面密度。这不是由于写后擦除,而是写过程本身的一部分。简单的矢量考虑阐明了这种降级的原因。因此,仅使用介质平面内振荡场来估计MAMR开关场减小的实验和建模方法会错误地高估交流场在磁记录过程中的影响。

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