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A Method Of Producing Small Grain Ru Intermediate Layers For Perpendicular Magnetic Media

机译:一种生产垂直磁性介质的小晶粒Ru中间层的方法

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摘要

NiAl + SiO_2 thin films were used as a grain size reducing seedlayer for cobalt alloy granular perpendicular magnetic recording media. The effect of this NiAl+SiO_2 seedlayer on the microstructure and crystalline orientation of Ru intermediate layer has been investigated. By co-sputtering the composite NiAl + SiO_2 seedlayer, the smallest average grain diameter of NiAl was significantly reduced to about 2.5 nm. The grain size of the subsequent Ru intermediate layer was reduced to about 4 nm. X-ray diffraction results indicate an epitaxial orientation relationship of NiAl (110) // Ru (0002) between the two layers. Moreover, significant improvement of this epitaxial relationship was developed, which produced narrow c-axis distribution of the Ru intermediate layer with small grain size. The addition of the NiAl + SiO_2 seedlayer is a very promising approach to reduce the Ru intermediate layer grain size and eventually the magnetic layer grain size for perpendicular magnetic recording media without deterioration of other properties of thin films.
机译:NiAl + SiO_2薄膜用作钴合金颗粒垂直磁记录介质的晶粒减小籽晶层。研究了该NiAl + SiO_2种子层对Ru中间层的微观结构和晶体取向的影响。通过共溅射复合NiAl + SiO_2种子层,NiAl的最小平均粒径显着减小至约2.5 nm。随后的Ru中间层的晶粒尺寸减小到约4nm。 X射线衍射结果表明两层之间的NiAl(110)// Ru(0002)的外延取向关系。而且,开发了这种外延关系的显着改善,其产生了具有小晶粒尺寸的Ru中间层的狭窄的c轴分布。 NiAl + SiO_2种子层的添加是一种非常有前途的方法,可以减少Ru中间层的晶粒尺寸,并最终减小垂直磁记录介质的磁性层的晶粒尺寸,而不会降低薄膜的其他性能。

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