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A study of magnetic recording media on glass substrates

机译:玻璃基板上的磁记录介质的研究

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摘要

Magnetic media deposited on glass substrates with metal seedlayer, Cr underlayer and CoCrPtTa alloy were studied. Within each group of samples, although the bulk magnetic properties were made to be similar, the media noise differed significantly; microstructural study indicated that the grain sizes of the magnetic layers were similar. X-ray diffraction study indicated that the magnetic layer was mostly {10.0} textured, with some [00.2] and [10.1] oriented grains also present. A correlation was observed between stronger CoCrPtTa {00.2} diffraction peak and lower media noise; the Cr {200} peak in the lower noise media was also much weaker. The different crystallographic texture is likely promoted by the surface condition of the seedlayer; larger number of [00.2] grains within the mostly {10.0} textured magnetic layer may suppress the formation of large coherently-magnetized regions in the zig-zag transitions, which mould result in lower media noise.
机译:研究了沉积在具有金属籽晶层,Cr底层和CoCrPtTa合金的玻璃基板上的磁性介质。在每组样品中,尽管使体磁特性相似,但介质噪声却有很大差异。显微组织研究表明,磁性层的晶粒尺寸相似。 X射线衍射研究表明,磁性层主要是{10.0}织构化,还存在一些[00.2]和[10.1]取向的晶粒。观察到较强的CoCrPtTa {00.2}衍射峰与较低的介质噪声之间存在相关性。较低噪声介质中的Cr {200}峰也弱得多。籽晶层的表面状态可能会促进不同的晶体织构。在{10.0}织构化磁性层中较大数量的[00.2]晶粒可以抑制之字形过渡中大的相干磁化区域的形成,从而导致较低的介质噪音。

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