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Analysis of Relation Between Magnetic Cluster Size Distribution and Signal Quality for High-Density Recording

机译:高密度记录的磁簇大小分布与信号质量的关系分析

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We examined the relationship between media cluster size distribution and signal quality to obtain a guideline for developing high-density recording media. Both spin-stand measurement and micromagnetics simulation were used. The cluster size distribution and signal-to-noise ratio (SNR) of various recording media were evaluated, and the relationship between the two was analyzed by multiple regression. The results demonstrate that the media SNR could be quantitatively estimated from the cluster size distribution (both average sizes and size deviations). Although reducing either the average size or the size deviation was effective for improving the SNR, the impact of reducing the average size was much larger. Moreover, the influence of the average size on the SNR increased as linear density increased due to transition percolation. We concluded that providing guidelines for developing each individual medium at the target recording density is a key step. For high-density recording, in particular, focusing on a small average cluster size is essential in developing media.
机译:我们研究了媒体簇大小分布与信号质量之间的关系,以获得开发高密度记录媒体的指南。同时使用了自旋支架测量和微磁模拟。评价了各种记录介质的簇大小分布和信噪比(SNR),并通过多元回归分析了两者之间的关系。结果表明,可以从群集大小分布(平均大小和大小偏差)中定量估计介质SNR。尽管减小平均大小或减小大小偏差对于改善SNR是有效的,但是减小平均大小的影响却更大。此外,由于过渡渗滤,平均密度对SNR的影响随着线性密度的增加而增加。我们得出的结论是,为在目标记录密度下开发每种单独的介质提供指导是关键的一步。特别是对于高密度记录,在开发媒体时,将重点放在较小的平均簇大小上至关重要。

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