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Low noise properties and thermal stability of Co-based thin film media for high density longitudinal recording

机译:用于高密度纵向记录的Co基薄膜介质的低噪声特性和热稳定性

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Media with excellent signal to noise properties and adequate high temperature thermal stability have been developed for over 20 Gbit/in/sup 2/ recording. The media are fabricated by dc magnetron sputtering onto textured NiP films on Al-Mg substrates. The magnetic layer is a CoCr-based quaternary alloy with (11.0) preferred orientation on a Cr alloy [002] underlayer. The average grain diameter has been reduced to an average of >10 nm. TEM-EDX studies revealed that Cr segregation has been enhanced compared to a previous CoCrPtTa media used for 15 Gbit/in/sup 2/ recording resulting in improved Co to Cr core composition and increased grain boundary Cr content. Spinstand measurements of the thermal decay after annealing at 65/spl deg/C indicate sufficient thermal stability at 400 kfci for media with Mr/spl delta/<0.3 memu/cm/sup 2/ consistent with magnetometry measurements.
机译:已经开发出具有出色的信噪比特性和足够的高温热稳定性的介质,可用于20 Gbit / in / sup 2 /的记录。介质是通过直流磁控溅射法在Al-Mg衬底上的织构NiP膜上制成的。磁性层是在Cr合金[002]底层上具有优选(11.0)取向的CoCr基四元合金。平均粒径已减小到平均> 10 nm。 TEM-EDX研究表明,与以前的用于15 Gbit / in / sup 2 /记录的CoCrPtTa介质相比,Cr的偏析得到了增强,从而改善了Co到Cr的核心成分并增加了晶界Cr的含量。在65 / spl deg / C退火后对热衰减进行的自旋支架测量表明,对于mr / spl delta / <0.3 memu / cm / sup 2 /的介质,在400 kfci时具有足够的热稳定性,与磁力测量法一致。

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