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Areal-Density Limits for Heat-Assisted Magnetic Recording and Perpendicular Magnetic Recording

机译:热辅助磁记录和垂直磁记录的地域密度限制

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摘要

Differences in the areal-density capability limits for heat-assisted magnetic recording (HAMR) and conventional perpendicular magnetic recording (PMR) are explored using spinstand measurements, drive footprinting, and micromagnetic modeling. The written track curvature is measured with a special technique that mitigates the cross-track averaging effects due to a finite read sensor width. Tracks written with HAMR heads are shown to have more curvatures compared with those written with modern PMR writers. Mitigation of written track curvature is demonstrated with two different HAMR writer designs. The curvature effect appears to challenge not only the downtrack bit resolution during readback, but also the cross-track written width with increased linear density (LD). Experimental measurements of a constant bit error rate for different LDs and track densities (TDs) indicate a significant opportunity for high TD recording using HAMR. The difference appears to be related to the ability for HAMR to address high track pitches with a minimal increase in risk of adjacent track interference compared with PMR.
机译:使用自旋支架测量,驱动器足迹和微磁模型研究了热辅助磁记录(HAMR)和常规垂直磁记录(PMR)的面密度限制之间的差异。写入的磁道曲率是使用特殊技术测量的,该技术可减轻由于有限的读取传感器宽度而引起的跨磁道平均效应。与现代PMR编写器相比,用HAMR磁头编写的轨道具有更大的曲率。两种不同的HAMR写入器设计可缓解写入轨迹的曲率。曲率效应似乎不仅挑战回读过程中的下轨道位分辨率,而且还挑战具有增加的线密度(LD)的跨轨道写入宽度。对不同LD和磁道密度(TD)进行恒定误码率的实验测量表明,使用HAMR进行高TD记录的机会很大。与PMR相比,这种差异似乎与HAMR处理高音高音高的能力有关,而相邻音轨干扰的风险增幅最小。

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