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Recording Performance of Discrete Track Patterned Media Fabricated by Focused Ion Beam

机译:聚焦离子束制备离散轨迹图案介质的记录性能

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We report on the recording performance of discrete track patterned media fabricated by focused ion beam (FIB). We investigated performance over a small area by spinstand read/write testing. Discrete track patterned regions show smaller magnetic track width and better signal separation between adjacent tracks and therefore higher track density than that of nonpatterned continuous media as a result of reduced side fringe effect and edge noise. We found that, at a designed groove depth of 4-8 nm, the shallow FIB etched grooves already provide good isolation between adjacent tracks, indicating the superiority of ion beam induced modification of magnetic properties in film media over physical modification of disk surface topography. This has implications for discrete track recording and media fabrication.
机译:我们报告了由聚焦离子束(FIB)制造的离散轨道图案化介质的记录性能。我们通过旋转支架读/写测试研究了小区域的性能。离散磁道图案化的区域显示出较小的磁迹线宽度,并且相邻磁迹之间的信号分离更好,因此,由于减少了侧边条纹效应和边缘噪声,因此磁迹密度高于未图案化的连续介质。我们发现,在4-8 nm的设计凹槽深度下,浅FIB刻​​蚀的凹槽已经在相邻磁道之间提供了良好的隔离度,表明离子束感应的薄膜介质中磁性的改性优于磁盘表面形貌的物理改性。这对离散轨道记录和媒体制作有影响。

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