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Tunneling-stabilized magnetic force microscopy of bit tracks on a hard disk

机译:硬盘上磁道的隧道稳定磁力显微镜

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A scanning tunneling microscope (STM) for surface magnetic force measurements on thin-film longitudinal magnetic storage media is described. The usual rigid PtIr tip of the STM was replaced by a flexible Fe-film tip and the tip position was stabilized near the surface of the sample using the STM feedback system as tunneling occurs between the tip and sample surface. Images of a CoCrTa thin-film hard disk showing 5 mu m*3 mu m bit tracks written by the ferrite head of a computer disk drive are presented. The images shown are comparable to images of the bit tracks on textured surfaces using either ferrofluid decoration or other magnetic force microscopy (MFM) imaging techniques. The sensitivity of the Fe-film tip was such that the influence on the image due to magnetic forces was larger than the influence due to sample surface topography.
机译:描述了一种用于在薄膜纵向磁存储介质上测量表面磁力的扫描隧道显微镜(STM)。 STM的常用刚性PtIr尖端被柔性的Fe膜尖端所代替,并且由于STM反馈系统在尖端和样品表面之间发生隧穿,因此尖端位置稳定在样品表面附近。呈现了CoCrTa薄膜硬盘的图像,其中显示了由计算机磁盘驱动器的铁氧体磁头写入的5μm* 3μm的位磁道。所显示的图像与使用铁磁流体装饰或其他磁力显微镜(MFM)成像技术在纹理表面上的位轨道图像相当。 Fe膜尖端的灵敏度应使磁力对图像的影响大于样品表面形貌的影响。

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