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首页> 外文期刊>IEEE Transactions on Magnetics >Media Roughness and Head-Media Spacing in Heat-Assisted Magnetic Recording
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Media Roughness and Head-Media Spacing in Heat-Assisted Magnetic Recording

机译:热辅助磁记录中的介质粗糙度和磁头介质间距

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摘要

Heat-assisted magnetic recording involves the transfer of energy to the recording medium via optical means. To enable high areal density, the recorded track must be smaller than the diffraction limit of focused light, which is accomplished by using a near-field transducer (NFT) with a corner or peg with small dimension. Energy transfer using such a transducer is a near-field effect, and therefore is highly sensitive to the spacing between the NFT and the medium. Since the recording medium has some surface roughness, there will be a variation in the NFT-to-medium spacing and this will impact the amount of energy transferred from the NFT. We model the effect of Gaussian surface roughness on NFT energy transfer and predict surface temperature variations for a rough surface. In addition, we illustrate how changing the head-medium spacing changes the impact that roughness has on surface temperature variation. We combine these modeled predictions with spinstand measurements of recorded data and conclude that the effect of media roughness results in only limited temperature excursions above the nominal recording medium temperature.
机译:热辅助磁记录涉及通过光学手段将能量转移到记录介质。为了实现高的面密度,记录的轨道必须小于聚焦光的衍射极限,这是通过使用具有小尺寸的角或钉的近场换能器(NFT)来实现的。使用这种换能器的能量传递是近场效应,因此对NFT和介质之间的间距高度敏感。由于记录介质具有一定的表面粗糙度,因此NFT与介质之间的间距会发生变化,这将影响从NFT传输的能量。我们对高斯表面粗糙度对NFT能量传递的影响进行建模,并预测粗糙表面的表面温度变化。另外,我们说明了改变磁头-介质间距如何改变粗糙度对表面温度变化的影响。我们将这些建模的预测与已记录数据的自旋支架测量相结合,得出结论,介质粗糙度的影响只会导致在名义记录介质温度以上的有限温度偏移。

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