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Novel noise model of a perpendicular magnetic recording medium

机译:垂直磁记录介质的新型噪声模型

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To explain the origin of noise in a perpendicular magnetic recording medium, the surface-nucleation model which assumes weak anisotropy on the surface layers is utilized. The model shows that DC-erased noise results from tilting magnetization in the film. The tilting angle is increased by the existence of weak anisotropy on the surface layers. The surface layers with weak anisotropy trigger the magnetization reversal of the whole film and enhance thermal fluctuations. As a result, coercivity at a finite temperature decreases dramatically. It is concluded that control the magnetic properties ore the medium surface is very important in order to attain low noise and stability against thermal fluctuation.
机译:为了解释垂直磁记录介质中的噪声的起源,利用了假设在表面层上具有弱各向异性的表面成核模型。该模型表明,DC消除的噪声是由薄膜中的倾斜磁化产生的。由于在表面层上存在弱的各向异性而增加了倾斜角。各向异性较弱的表面层会触发整个薄膜的磁化反转,并增加热波动。结果,在有限温度下的矫顽力急剧下降。结论是控制介质表面的磁性能对于获得低噪声和抗热波动的稳定性非常重要。

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