论文标题

了解颗粒状L10-纤维膜磁磁化介质中高光谱比率晶粒的生长

Understanding the growth of high-aspect-ratio grains in granular L10-FePt thin-film magnetic media

论文作者

Xu, Chengchao, Zhou, Bing, Du, Tianxiang, Varaprasad, B. S. D. Ch. S, Laughlin, David E., JianGang, Zhu

论文摘要

已经进行了系统的研究,以优化$ \ mathrm {l1_0-fept-sio_x} $粒状薄膜的微观结构,作为用于热辅助磁性记录的记录介质。即使在$ 700^\ Circ \ text {C} $的价格稳定的Fept-BN成核层也用于控制高温处理过程中的晶粒尺寸和微观结构。该研究发现,具有良好形式的氧化硅(SIOX)晶界的高镜比晶粒的膜需要在膜生长过程中的沉积温度以及氧化硅浓度的分级。 $ \ mathrm {l1_0-fept} $均匀分离的柱状晶粒已达到平均高度大于11 nm,直径小于7 nm。提出了在多种非最佳条件下产生的样品的微观结构的透射电子显微镜(TEM)分析,以显示膜的微观结构如何取决于每个溅射参数。

A systematic investigation has been performed to optimize the microstructure of $\mathrm{L1_0-FePt-SiO_x}$ granular thin film as recording media for heat-assisted magnetic recording. The FePt-BN nucleation layer, which is stable even at $700^\circ \text{C}$, is used to control the grain sizes and microstructure during high-temperature processing. The study finds that films of high-aspect-ratio FePt grains with well-formed silicon oxide (SiOx) grain boundaries require the grading of the deposition temperature during film growth as well as the grading of the silicon oxide concentration. Well-isolated columnar grains of $\mathrm{L1_0-FePt}$ with an average height greater than 11 nm and diameters less than 7 nm have been achieved. Transmission electron microscopy (TEM) analysis of the microstructures of samples produced under a variety of non-optimal conditions is presented to show how the microstructure of the films depends on each of the sputtering parameters.

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