Single-Pole Heads with Thin Fe-Si Main-Pole Films

K. Takano;Y. Nakamura
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Abstract

The linear recording density in perpendicular magnetic recording is limited by the thickness of the main-pole in the single-pole head. In order to raise the practical readback resolution, a thin main-pole film is indispensable. Fe-Si film has a large saturation magnetization and good soft magnetic properties are obtained at thicknesses between 50 and 200 nm. However, as the film thickness decreases below 100 nm, the domain wall structure and domain configuration change from Bloch-type walls and closure domains. A head with such a thin film as its main-pole has unstable readback output and poor resolution. The authors therefore adopted as the main-pole an Fe-Si/SiO 2 multi-layered film whose domain structure differs from that of a single-layer Fe-Si film. As a result, the output stability and high-density response could be improved by controlling the intermediate layer (hereafter "inter-layer") thickness and the number of magnetic layers.
Fe-Si主电极薄膜单极磁头
垂直磁记录中的线性记录密度受到单极磁头中主极厚度的限制。为了提高实际的读回分辨率,薄的主极膜是必不可少的。Fe-Si膜具有大的饱和磁化强度,并且在50至200nm之间的厚度下获得良好的软磁性能。然而,当膜厚度降低到100nm以下时,畴壁结构和畴构型从Bloch型壁和闭合畴改变。以这种薄膜作为主电极的磁头具有不稳定的读回输出和较差的分辨率。因此,作者采用了Fe-Si/SiO2多层膜作为主极,其畴结构不同于单层Fe-Si膜。因此,可以通过控制中间层(以下简称“层间”)的厚度和磁性层的数量来提高输出稳定性和高密度响应。
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