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Ultrahigh-density storage media prepared by artificially assisted self-assembling methods

机译:通过人工辅助自组装方法制备的超高密度存储介质

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摘要

Two types of recording media possessing nanodot structures were investigated. The media were prepared by an artificially assisted self-assembling (AASA) method, which includes simple nanopatterning using a nanoimprint and fine nanopatterning using self-assembling organic molecules. One type of recording media is circumferential magnetic patterned media prepared on a 2.5-in.-diam glass plate. A Ni master disk possessing spiral patterns with 60-250 nm width lands and a 400 nm width groove was pressed to a resist film on a CoCrPt film to transfer the spiral patterns. A diblock copolymer solution was cast into the obtained grooves, and then annealed to prepare self-assembling dot structures aligned along the grooves. According to the dot patterns, the lower magnetic films were patterned by ion milling to yield patterned media with 40 nm diameter. We have also prepared FePt dot media with high magnetic anisotropy for near-field and magnetic-field hybrid recording aiming at more than 1 Tb/in.(2) density. A Ni stamp disk with aligned dot structures was also prepared by the AASA method to produce patterned media at the lowest cost. The other type of media was organic patterned media for X-Y type near-field optical storage. Bulky dye molecules were evaporated in vacuum to produce self-assembling amorphous nanodots. The dots were arranged by the AASA method, i.e., according to the polymethylmethacrylate film hole arrays or chemically patterned surface. (C) 2005 American Institute of Physics.
机译:研究了两种具有纳米点结构的记录介质。培养基是通过人工辅助自组装(AASA)方法制备的,该方法包括使用纳米压印进行简单的纳米构图和使用自组装有机分子进行精细的纳米构图。一种类型的记录介质是在2.5英寸直径的玻璃板上制备的周向磁性图案化介质。将具有60-250nm宽度的平台(land)和400nm宽度的凹槽的具有螺旋图案的Ni母盘压到CoCrPt膜上的抗蚀剂膜上以转印螺旋图案。将二嵌段共聚物溶液浇铸到获得的凹槽中,然后退火以制备沿凹槽排列的自组装点结构。根据点图案,通过离子研磨将下部磁性膜图案化,以产生直径为40nm的图案化介质。我们还准备了具有高磁各向异性的FePt点介质,用于密度大于1 Tb / in。(2)的近场和磁场混合记录。还通过AASA方法制备了具有对准的点结构的Ni压模盘,以最低的成本生产图案化的介质。另一类介质是用于X-Y型近场光学存储的有机图案化介质。大体积的染料分子在真空中蒸发以产生自组装的非晶纳米点。通过AASA方法,即,根据聚甲基丙烯酸甲酯膜孔阵列或化学图案化的表面来布置点。 (C)2005美国物理研究所。

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