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Impact of radius and skew angle on areal density in heat assisted magnetic recording hard disk drives

机译:半径和偏斜角度对热辅助磁记录硬盘驱动器的面密度的影响

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This study aims to investigate the impact that factors such as skew, radius, and transition curvature have on areal density capability in heat-assisted magnetic recording hard disk drives. We explore a “ballistic seek” approach for capturing in-situ scan line images of the magnetization footprint on the recording media, and extract parametric results of recording characteristics such as transition curvature. We take full advantage of the significantly improved cycle time to apply a statistical treatment to relatively large samples of experimental curvature data to evaluate measurement capability. Quantitative analysis of factors that impact transition curvature reveals an asymmetry in the curvature profile that is strongly correlated to skew angle. Another less obvious skew-related effect is an overall decrease in curvature as skew angle increases. Using conventional perpendicular magnetic recording as the reference case, we characterize areal density capability as a function of recording position.
机译:本研究旨在调查偏斜,半径和过渡曲率等因素对热辅助磁记录硬盘驱动器中的区域密度能力的影响。我们探索用于捕获记录介质上磁化足迹的原位扫描线图像的“弹道寻求”方法,并提取诸如过渡曲率的记录特性的参数结果。我们充分利用了显着改善的循环时间,将统计处理应用于相对大的实验曲率数据样本以评估测量能力。影响转变曲率的因素的定量分析揭示了与歪斜角度强烈相关的曲率曲线中的不对称性。随着歪斜角度的增加,另一个不太明显的歪曲相关效果是曲率的总体下降。使用传统的垂直磁记录作为参考情况,我们将面积密度能力表征为记录位置的函数。

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