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Magnetic viscosity, hysteresis reptation, and their relationship with adjacent track interference in advanced perpendicular recording media

机译:先进的垂直记录介质中的磁粘性,磁滞现象及其与相邻磁道干扰的关系

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摘要

The role of exchange interactions and thermal relaxation in advanced three-layer exchange-coupled composite perpendicular recording media with graded anisotropy was investigated through studies on magnetic viscosity, magnetic hysteresis reptation, and spin-stand adjacent track interference. For this purpose, thickness series in the NiW seed and the three magnetic layers were made and studied. For each sample, both magnetic viscosity and reptation were evaluated using a magnetometer over a series of initial magnetic states. Magnetic viscosity, which is the change in the magnetization of the sample with time, showed a distinct second-order dependence on a logarithmic time-scale. In general, viscosity appeared to be more strongly influenced by exchange-coupling interactions in the media than the thermal stability. Magnetic reptation, which is the change in the magnetization when the external field was repeatedly cycled between a nonzero field and zero field, i.e., remanence, showed two types of distinct reptation phenomena-field reptation and remanence reptation- depending on whether the magnetic state was evaluated with the external field present or removed, respectively. Both field and remanence reptation showed a second-order logarithmic dependence on the number of cycles. A comparison of viscosity and field reptation revealed a correlation, indicating that the origin of field reptation in perpendicular recording media can be associated with viscosity. Such a correlation could not be established between viscosity and remanence reptation. Spin-stand signal amplitude change of written tracks, due to adjacent track interference, also followed a second-order logarithmic dependence on the number of adjacent writes. When compared appropriately, the signal amplitude change showed an excellent correlation with remanence reptation across all media samples. This suggests that adjacent track interference in magnetic recording can be associated with remanence reptation evaluated using a magnetometer, despite their vast difference in time-scales. Moreover, this correlation was observed irrespective of the thermal stability of the media, which corroborates the hypothesis that in composite media, exchange interaction effects have a more dominant role than thermal relaxation effects in influencing switchability vis-a-vis adjacent track interference. In consequence, remanence reptation can be a useful technique to study the interplay of exchange and thermal effects in magnetic media.
机译:通过研究磁黏度,磁滞现象和自旋支架相邻磁道干扰,研究了具有梯度各向异性的高级三层交换耦合复合垂直记录介质中交换相互作用和热弛豫的作用。为此,制作并研究了NiW晶种和三个磁性层的厚度系列。对于每个样品,使用磁力计在一系列初始磁态下评估磁粘度和蠕变。磁粘性(即样品磁化强度随时间的变化)显示出对数时标的明显二阶依赖性。通常,与热稳定性相比,粘度似乎受到介质中交换耦合相互作用的更大影响。磁场复磁是外部磁场在非零场和零场之间反复循环(即剩磁)时磁化强度的变化,它表现出两种不同的复现现象:场复磁和剩磁复磁(取决于磁态是否为磁态)。在存在或移除外部字段的情况下分别进行评估。场和剩磁表示都显示出对数依赖于循环数。粘度和场复制的比较揭示了一种相关性,表明垂直记录介质中场复制的起源可能与粘度有关。在粘度和剩磁之间无法建立这种关系。由于相邻磁道的干扰,写入磁道的自旋支架信号幅度变化也遵循了对数依赖于相邻写入次数的对数关系。当进行适当比较时,信号幅值变化与所有介质样本上的剩余磁化强度显示出极好的相关性。这表明,尽管磁记录中的相邻磁道在时间尺度上存在巨大差异,但它们可能与使用磁力计评估的剩磁复现有关。此外,无论介质的热稳定性如何,都可以观察到这种相关性,这证实了以下假设:在复合介质中,交换相互作用效应比热弛豫效应在影响相对于相邻轨道干扰的可切换性方面具有比热弛豫效应更主要的作用。因此,剩磁可以成为研究磁性介质中交换和热效应相互作用的有用技术。

著录项

  • 来源
    《Journal of Applied Physics 》 |2012年第4期| p.043911.1-043911.13| 共13页
  • 作者

    Kumar Srinivasan; Eric Roddick;

  • 作者单位

    Western Digital, 1710 Automation Parkway, San Jose, California 95131, USA;

    Western Digital, 1710 Automation Parkway, San Jose, California 95131, USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
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