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Micromagnetic simulation of high speed head dynamics in perpendicular recording

机译:垂直记录中高速磁头动力学的微磁模拟

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The continuous increase in storage density and data rates in magnetic recording requires the reduction of the typical dimensions of magnetic write and read heads. As a result an ever more detailed understanding of the behavior of magnetic recording heads and their interaction with the recording media (and the SUL in perpendicular recording systems) and the underlying physical effects is required. As the size of the write pole shrinks, it becomes important to consider dynamic micromagnetic effects, which take into account the domain structure in the write head. In this paper, we have used a magnetic recording head model, which is based on a parallel finite element micromagnetics package, to study the magnetization reversal process in a single-pole-type (SPT) perpendicular recording head and the resulting write field dynamics. The model includes the full head structure including the return pole and a discretized micromagnetic SUL while the magnetic recording medium has been omitted. Finally, the effect of the head motion with respect to the magnetic recording media has to be taken into account.
机译:磁记录中存储密度和数据速率的不断提高要求减小磁写和读头的典型尺寸。结果,需要对磁记录头的行为及其与记录介质(以及垂直记录系统中的SUL)的相互作用以及潜在的物理效应进行更详细的了解。随着写磁极尺寸的缩小,考虑动态微磁效应变得很重要,该效应要考虑到写磁头中的畴结构。在本文中,我们使用了基于平行有限元微磁封装的磁记录头模型,研究了单极型(SPT)垂直记录头的磁化反转过程以及由此产生的写入场动力学。该模型包括全头结构,包括返回磁极和离散化的微磁SUL,同时省略了磁记录介质。最后,必须考虑头部运动相对于磁记录介质的影响。

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