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Optimisation of dual structure recording media for microwave-assisted magnetic recording

机译:微波辅助磁记录双结构记录介质的优化

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摘要

Dual structure recording media with a “notched” anisotropy configuration were optimised for use in a microwave-assisted magnetic recording system. First of all the effective head field gradient was maximised by tuning the anisotropy of the layers in each structure. Next, intergranular and interlayer exchange coupling was adjusted to maximise the signal to noise ratio of written tracks. A grain switching probability model was trained and used to generate written bit sequences for read bit error rate calculations. For two structures with different ferromagnetic resonance frequencies the total amount of user data that could be stored on the two structures was estimated to be 2.98 Tbit/in2.
机译:具有“缺口”各向异性配置的双结构记录介质被优化用于微波辅助磁记录系统。首先通过调谐每个结构中的层的各向异性来最大化有效的头场梯度。接下来,调整晶间和层间交换耦合,以最大化书面轨道的信噪比。培训谷粒切换概率模型,并用于为读取误码率计算生成写入位序列。对于具有不同铁磁谐振频率的两个结构,估计可以存储在两个结构上的用户数据总量为2.98 Tbit / In2。

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