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Medium Stack Optimization for Microwave-Assisted Magnetic Recording

机译:微波辅助磁记录的介质堆栈优化

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摘要

In this paper, we present systematic micromagnetic modeling investigation on recording process of segmented thin-film media with circularly polarized magnetic field at microwave frequencies. This paper provides insightful understanding about the segmented medium stack design in microwave-assisted magnetic recording (MAMR) by exploring the impact of signal-to-noise (SNR) ratio and recording track width. By utilizing segmentation of grains with exchange breaking layers, the ac magnetic field generated from spin torque oscillator can be best exploited. Via optimized medium stack design, MAMR is able to achieve both high SNR and areal density gain with the proposed notched-structure medium (top and bottom segments have the strongest crystalline anisotropy) compared with conventional graded medium (with gradually increasing anisotropy from top to bottom). By tuning crystalline anisotropy strength in top and bottom segment, we studied the MAMR behavior of SNR and track width under different ac frequencies. This provides a novel view for future segmented media design.
机译:在本文中,我们对在微波频率下圆极化磁场的分段薄膜介质的记录过程进行系统的微磁建模研究。通过探讨信噪比(SNR)和记录磁道宽度的影响,本文提供了对微波辅助磁记录(MAMR)中分段介质堆栈设计的深刻理解。通过利用带有交换中断层的晶粒分割,可以最佳地利用自旋转矩振荡器产生的交流磁场。通过优化的介质堆栈设计,与传统的梯度介质(上下各向异性逐渐增加)相比,MAMR能够利用拟议的带缺口结构的介质(顶部和底部段的晶体各向异性最强)实现高SNR和面密度增加)。通过调整顶部和底部的晶体各向异性强度,我们研究了在不同交流频率下SNR和磁道宽度的MAMR行为。这为将来的细分媒体设计提供了新颖的观点。

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