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Experimental study of thermal decay in high-density magnetic recording media

机译:高密度磁记录介质中热衰减的实验研究

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The thermal decay of written bits in CoCrPt/CrTi thin film media for high density longitudinal magnetic recording is examined using a magnetoresistive head at room temperature. A decay in signal output over time is observed for the media with a thin magnetic layer less than about 14 nm thick and the media noise increases. The thermal stability factor Ku.V/k.T of these media is estimated to be less than about 100. The signal decay and noise increase are more serious at higher linear recording densities. These results are consistent with the results of a micromagnetic simulation taking into account the thermal aftereffects. These characteristics suggest that media with a large magnetic anisotropy constant Ku will be required to realize high storage densities of over 10 Gb/in/sup 2/.
机译:在室温下,使用磁阻磁头检查CoCrPt / CrTi薄膜介质中用于高密度纵向磁记录的写入位的热衰减。对于具有小于约14nm厚的薄磁性层的介质,观察到信号输出随时间的衰减,并且介质噪声增加。这些介质的热稳定性因子Ku.V / k.T估计小于约100。在较高的线性记录密度下,信号衰减和噪声增加更为严重。考虑到热后效应,这些结果与微磁模拟的结果一致。这些特征表明,将需要具有大的磁各向异性常数Ku的介质来实现超过10 Gb / in / sup 2 /的高存储密度。

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