Inter-granular exchange coupling control by oxygen ratio in CoPtCrO perpendicular media

Y. Ikeda, N. Supper, K. Takano, H. Do
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Abstract

Perpendicular recording is the most promising candidate to achieve areal densities exceeding 1 Tbit/in/sup 2/. To achieve this goal, small grains with high uniaxial anisotropy and good magnetic isolation are required for the media. However, the optimum exchange coupling is also necessary to reduce DC-erase noise caused by the reversed grains due to the high demagnetization field. The high nucleation field H/sub n/, and the low noise of the CoPtCrO perpendicular medium are attractive features. In this paper, the medium noise and exchange coupling correlation has been investigated by changing the oxygen ratio in the sputter gas.
CoPtCrO垂直介质中氧比对颗粒间交换耦合的控制
垂直记录是最有希望实现面密度超过1 Tbit/in/sup / 2/的候选方法。为了实现这一目标,介质需要具有高单轴各向异性和良好磁隔离的小颗粒。然而,为了降低由于高退磁场而产生的反向晶粒引起的直流擦除噪声,还需要最佳的交换耦合。CoPtCrO垂直介质的高成核场H/sub /和低噪声是吸引人的特点。本文通过改变溅射气体中的氧比,研究了介质噪声与交换耦合的关系。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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