Low noise mechanism in exchange coupled perpendicular recording media

Honda N, T. Komakine, K. Ouchi
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Abstract

Perpendicular magnetic recording is one of the most promising systems for ultra-high density recording beyond 200 Gbit/in/sup 2/. Steeper M-H loop slopes of the recording media are indispensable for obtaining a high recording resolution. Introduction of exchange coupling between the adjacent grains in the media is also effective in increasing the loop slope. However, increased exchange coupling generally causes enhanced medium noise due to increased magnetic domain size in the media. On the other hand, the dominant medium noise in double layered perpendicular recording media is the transition noise caused by jitter at the transitions. In this case, the noise could be small when a sharp transition is formed. Therefore, it would be possible to realize low noise media with a high resolution in perpendicular recording media. The low noise mechanism was studied using a simulation analysis.
交换耦合垂直记录介质的低噪声机制
垂直磁记录是超200 Gbit/in/sup / /超高密度记录最有前途的系统之一。为了获得高记录分辨率,记录介质的M-H环斜率必须更陡。引入介质中相邻颗粒之间的交换耦合也有效地增加了环路斜率。然而,由于介质中磁畴尺寸的增加,交换耦合的增加通常会导致介质噪声的增强。另一方面,在双层垂直记录介质中,主要的介质噪声是由过渡处的抖动引起的过渡噪声。在这种情况下,当形成一个急剧的过渡时,噪声可能很小。因此,在垂直记录介质中实现高分辨率的低噪声介质是可能的。通过仿真分析,研究了其低噪声机理。
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