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Jitter Analysis and Cross-Track Correlation Length Extraction Through Nonlinear Noise Scaling With Reader Width

机译:带有阅读器宽度的非线性噪声定标方法的抖动分析和跨轨相关长度提取

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摘要

Understanding and further reduction of transition jitter are extremely critical to future areal density increase in a magnetic recording system. From the μ-track model, jitter power σ is directly proportional to the inverse of reader width W as long as W is much greater than the cross-track correlation length sc. A narrower reader may exhibit a nonlinear behavior in the σ versus 1/W plot, and this nonlinearity reveals the essential information needed for developing a novel s extraction scheme. The concept is first verified with the μ-magnetics model and then validated with experimental data. Recording measurement of jitter dependence on W is greatly simplified by performing subtraction of two off-track waveforms using a nominal width reader. This analysis has been applied to media series with different grain exchange couplings and grain sizes (GSs) to understand the jitter impact from s, GS, switching field distribution, and head field gradient. Fundamental media parametrics can be experimentally characterized and related to transition jitter through the revised μ-track model.
机译:了解和进一步降低跃迁抖动对于磁记录系统中未来的面密度增加至关重要。根据μ轨道模型,只要W远大于跨轨道相关长度sc,则抖动功率σ与读取器宽度W的倒数成正比。较窄的阅读器可能在σ与1 / W的关系图中表现出非线性行为,并且这种非线性揭示了开发新型s提取方案所需的基本信息。首先使用μ-magnetics模型验证该概念,然后使用实验数据对其进行验证。通过使用标称宽度读取器对两个离轨波形进行减法运算,可以大大简化抖动对W的记录测量。此分析已应用于具有不同晶粒交换耦合和晶粒尺寸(GSs)的介质系列,以了解s,GS,切换场分布和磁头场梯度引起的抖动影响。基本介质参数可以通过修改后的μ轨道模型进行实验表征,并与过渡抖动相关。

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