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Determining the Anisotropy of Bit-Patterned Media for Optimal Performance

机译:确定位图介质的各向异性以获得最佳性能

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摘要

In conventional recording theory, the transition width should be minimized by writing the transition at the location of the maximum head-field gradient, and this should be achieved by setting the coercivity equal to the head field at the location of the maximum head-field gradient (taking appropriate account of the variation of coercivity with field angle). A natural assumption in bit-patterned media is that the system could be optimized by setting the island switching field in a similar manner. In this paper, we investigate what strategy of optimization gives the minimum error rate or the maximum write-window.
机译:在常规记录理论中,应通过在最大磁头场梯度的位置处写入跃迁来最小化跃迁宽度,并且应通过将矫顽力设置为等于最大磁头场梯度处的磁头场来实现。 (适当考虑矫顽力随视场角的变化)。在位模式的媒体中,自然的假设是可以通过以类似方式设置孤岛切换场来优化系统。在本文中,我们研究了哪种优化策略可以提供最小的错误率或最大的写入窗口。

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