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THE ROLE OF STM TIP SHAPE IN HEAT ASSISTED MAGNETIC PROBE RECORDING ON CONI/PT FILM

机译:STM尖端形状在用Coni / PT薄膜记录的热辅助磁探针中的作用

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摘要

A method of heat-assisted magnetic recording (HAMR) potentially suitable for probe-based storage systems is characterized. In this work, field emission current from a scanning tunneling microscope (STM) tip is used as the heating source. The tip is made of Ir/Pt alloy. Pulse voltages of 3-7 V with a duration of 500ns were applied to a CoNi/Pt multilayered film. Written by a blunt tip (radius 1000nm), marks are formed with a nearly uniform mark size of 170nm when the pulse voltage is above 4 V. While sharp tip (radius 50 nm) writing achieves no mark. The emission area of our tip-sample system derived from an analytic expression for field emission current is approximately equal to the mark size, and is largely independent of pulse voltage. For the blunt tip, the emission region is almost the same as the mark size. While for the sharp tip, the initially formed mark is too small, so that the domain wall surface tension shrinks the mark and it crashes finally.
机译:表征了一种可能适用于基于探针的存储系统的热辅助磁记录(HAMR)方法。在这项工作中,来自扫描隧道显微镜(STM)尖端的场发射电流用作加热源。尖端由Ir / Pt合金制成。将持续时间为500ns的3-7 V脉冲电压施加到CoNi / Pt多层膜上。由钝头(半径为1000nm)书写,当脉冲电压高于4 V时,形成的标记具有几乎均匀的170nm标记大小。而尖锐的尖端(半径为50 nm)书写则没有标记。根据对场发射电流的解析表达式得出的尖端样品系统的发射面积大约等于标记尺寸,并且在很大程度上与脉冲电压无关。对于钝头,发射区域几乎与标记大小相同。而对于尖锐的尖端,最初形成的标记太小,以致于畴壁表面张力使标记缩小并最终崩溃。

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