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Recording Performance Analysis of Perpendicular Magnetic Recording Media With Anisotropy Graded Oxide and Cap Layers

机译:具有各向异性梯度氧化物和盖层的垂直磁记录介质的记录性能分析

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摘要

We have experimentally and analytically studied the writeability and recording characteristics of perpendicular magnetic recording media in which the anisotropy $({rm K}_{rm u})$ of the granular oxides and the magnetization $({rm M}_{rm s})$ and lateral exchange coupling $({rm A}_{rm ex})$ of the cap layer were varied. The analytical results are obtained with a 9-spin model, which consists of 3 grains with 3 layers each, representing dual oxide media with a capping layer. The 9-spin model estimates bit error rate (BER) using an error-pattern-correcting code (EPCC) based iterative channel model. The experimental results qualitatively agree well with the analytical results of the 9-spin model. High ${rm K}_{rm u}$ gradient oxides and high ${rm M}_{rm s}$ cap layer improve writeability and BER, whereas high ${rm A}_{rm ex}$ in the cap layer degrades switching field distribution and off-track capability. Media switching field and switching field distribution strongly depend on spatial distribution of the external field. Both experimental and analytical results indicate that an appropriate design of ${rm K}_{rm u}$ graded media with an optimum cap layer can effectively reduce jitter and switching field distribution for given head fields, resulting in higher recording density.
机译:我们已经通过实验和分析研究了垂直磁记录介质的可写性和记录特性,其中各向异性 $({rm K} _ {rm u})$ < / tex> 颗粒氧化物和磁化 $({rm M} _ {rm s})$ 并且覆盖层的横向交换耦合 $({rm A} _ {rm ex})$ 有所不同。分析结果是通过9旋转模型获得的,该模型由3个晶粒(每个晶粒具有3个层)组成,代表具有覆盖层的双氧化物介质。 9自旋模型使用基于错误模式校正码(EPCC)的迭代通道模型来估计误码率(BER)。实验结果在质量上与9旋转模型的分析结果吻合良好。高 $ {rm K} _ {rm u} $ 梯度氧化物和高 $ {rm M} _ {rm s} $ 覆盖层可提高可写性和BER,而 帽层中的$ {rm A} _ {rm ex} $ 会降低开关场分布和偏离磁道的能力。媒体切换场和切换场分布在很大程度上取决于外部场的空间分布。实验和分析结果均表明,适当设计 $ {rm K} _ {rm u} $ 分级介质,并使用最佳的盖层可以有效地减少给定磁头场的抖动和切换场分布,从而提高记录密度。

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