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Areal density optimizations for heat-assisted magnetic recording of high-density media

机译:用于高密度介质的热辅助磁记录的面密度优化

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摘要

Heat-assisted magnetic recording (HAMR) is hoped to be the future recording technique for high-density storage devices. Nevertheless, there exist several realization strategies. With a coarsegrained Landau-Lifshitz-Bloch model, we investigate in detail the benefits and disadvantages of a continuous and pulsed laser spot recording of shingled and conventional bit-patterned media. Additionally, we compare single-phase grains and bits having a bilayer structure with graded Curie temperature, consisting of a hard magnetic layer with high T_C and a soft magnetic one with low T_C, respectively. To describe the whole write process as realistically as possible, a distribution of the grain sizes and Curie temperatures, a displacement jitter of the head, and the bit positions are considered. For all these cases, we calculate bit error rates of various grain patterns, temperatures, and write head positions to optimize the achievable areal storage density. Within our analysis, shingled HAMR with a continuous laser pulse moving over the medium reaches the best results and thus has the highest potential to become the next-generation storage device.
机译:热辅助磁记录(HAMR)有望成为高密度存储设备的未来记录技术。然而,存在几种实现策略。使用粗粒度的Landau-Lifshitz-Bloch模型,我们详细研究了连续和脉冲激光斑点记录带状和常规位图媒体的优缺点。此外,我们比较了具有居里温度梯度的双层结构的单相晶粒和位,它们分别由具有较高T_C的硬磁性层和具有较低T_C的软磁性层组成。为了尽可能真实地描述整个写入过程,考虑了晶粒尺寸和居里温度的分布,磁头的位移抖动以及位的位置。对于所有这些情况,我们计算各种晶粒图案,温度和写头位置的误码率,以优化可实现的面存储密度。在我们的分析中,连续激光脉冲在介质上移动的带盖HAMR效果最佳,因此具有成为下一代存储设备的最大潜力。

著录项

  • 来源
    《Journal of Applied Physics》 |2016年第22期|223903.1-223903.12|共12页
  • 作者单位

    Institute of Solid State Physics, TU Wien, Wiedner Hauptstrasse 8-10,1040 Vienna, Austria,Institute of Analysis and Scientific Computing, TU Wien, Wiedner Hauptstrasse 8-10,1040 Vienna, Austria;

    Christian Doppler Laboratory for Advanced Magnetic Sensing and Materials, Institute for Solid State;

    Christian Doppler Laboratory for Advanced Magnetic Sensing and Materials, Institute for Solid State;

    Christian Doppler Laboratory for Advanced Magnetic Sensing and Materials, Institute for Solid State;

    Institute of Analysis and Scientific Computing, TU Wien, Wiedner Hauptstrasse 8-10,1040 Vienna, Austria;

  • 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
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