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Experimental Study of Head-Disk Interface Instability on Light Contact Recording Using Dynamic Flying Height Control

机译:动态飞行高度控制的光接触记录头-磁盘接口不稳定性的实验研究

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The instability of the slider touchdown process was observed by the sensitive method that uses PZT ((Zr$_{rm x}$ Ti$_{1 - {rm x}}$) O$_{3}$ ) sensor mounted on a suspension. By using this method, we could differentiate from the contact between the slider and the lubricant surface, the stable regime beyond touchdown (surfing regime), and the final full contact with the disk surface. Z-dol2000S clearly showed the surfing regime, but Z-tetraol2000S did not show the surfing regime on a thin lubricant film with a thickness of less than 16 Å. In the case of Z-dol, the magnitude of the slider vibration at the contact on the lubricant surface depended on the lubricant thickness; in the case of Z-tetraol, a large vibration was observed only at 20 Å. We have tried to explain these phenomena with the help of potential energy curves that are based on intermolecular forces calculated by molecular dynamic simulations. Potential energy curves could be used to explain the stability of the touchdown process.
机译:通过使用安装在PZT((Zr $ _ {rm x} $ Ti $ _ {1-{rm x}} $ O $ _ {3} $)传感器上的灵敏方法,可以观察到滑块触地过程的不稳定性。暂停。通过使用这种方法,我们可以区分滑块与润滑剂表面之间的接触,触地以外的稳定状态(冲浪状态)以及与磁盘表面的最终完全接触。 Z-dol2000S清楚地显示了冲浪状态,但是Z-tetraol2000S在厚度小于16的薄润滑膜上没有显示出冲浪状态。在Z-dol的情况下,在润滑剂表面接触处的滑块振动的大小取决于润滑剂的厚度。对于Z-四醇,仅在20Å处观察到较大的振动。我们试图借助基于分子动力学模拟计算的分子间力的势能曲线来解释这些现象。势能曲线可以用来解释着陆过程的稳定性。

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