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Patterned Bit Cell Arrangement and Broadening of Switching Field Distribution Caused by Magneto-Static Interactions

机译:磁静相互作用引起的图案化位元排列和开关场分布拓宽

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摘要

Patterned media technology is a promising approach for future high density magnetic data storage. The bit-to-bit spacing becomes smaller as recording density increases. As a result, the magneto-static field $({rm H}_{rm d})$ from the surrounding bits becomes stronger, and contributes more to the broadening of the switching field distribution (SFD) of targeted bit. This paper reports the investigations between possible bit-cell arrangements and SFD broadening caused by the magneto-static field. The possible bit-cell arrangements are categorized into three groups—square arrangement, isosceles triangular arrangement, and equilateral triangular arrangement. The influences of manufacturing induced deviations, including bit-cell position offset and bit-cell size variation, over the ${rm H}_{rm d}$ are also simulated. The results suggested that isosceles triangular arrangement can reduce the SFD broadening, without increasing the requirement on track positioning accuracy.
机译:模式化媒体技术是未来高密度磁数据存储的一种有前途的方法。随着记录密度的增加,位到位的间隔变小。结果,来自周围位的静磁场 $({rm H} _ {rm d})$ 变强,并为目标位的开关场分布(SFD)的扩展做出更多贡献。本文报道了可能的位单元排列和由静磁场引起的SFD展宽之间的关系。可能的位单元排列分为三类:正方形排列,等腰三角形排列和等边三角形排列。制造引起的偏差的影响,包括位单元位置偏移和位单元大小变化,在<公式公式类型=“ inline”> $ {rm H} _ {rm d} $ < / tex> 也被模拟。结果表明,等腰三角形布置可以减小SFD宽度,而无需增加对轨道定位精度的要求。

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