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首页> 外文期刊>IEEE Transactions on Magnetics >Continuous/Cluster-Pinned Recording Media
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Continuous/Cluster-Pinned Recording Media

机译:连续/群集固定的记录媒体

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摘要

We propose and theoretically investigate a new class of nanostructured magnetic recording films, cluster-pinned recording media. The films consist of magnetic clusters exchange coupled to a continuous hard layer with perpendicular anisotropy and low coercivity. Our calculations yield the coercivity and the cross-track correlation length as a function of film thickness and pinning density and strength. The mechanism is very similar to the Gaunt-Friedel pinning in bulk magnets, which differs from ordinary strong pinning by the selfconsistent dependence of wall curvature and coercivity on defect concentration. The main difference is the exponent for the coercivity as a function of the pinning strength, which is equal to 2 in the bulk but equal to 3/2 in thin films. The pinning strength is estimated for various regimes, and it is shown that the diminished domain-wall curvature reduces jitter
机译:我们提出并从理论上研究了新型的纳米结构磁记录膜,簇固定记录介质。薄膜由磁性团簇组成,磁性团簇耦合到具有垂直各向异性和低矫顽力的连续硬层。我们的计算得出矫顽力和跨轨相关长度是膜厚度,钉扎密度和强度的函数。该机制与块状磁体中的Gaunt-Friedel钉扎非常相似,这与普通的强钉扎不同,其原因在于壁曲率和矫顽力对缺陷集中度的一致依赖。主要区别是矫顽力随钉扎强度变化的指数,该强度在整体上等于2,在薄膜中等于3/2。估计了各种情况下的钉扎强度,结果表明,减小的畴壁曲率会降低抖动

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