用椭偏显微镜测量分子薄润滑膜厚度

K. Fukuzawa, T. Shimuta, A. Nakada, H. Zhang, Y. Mitsuya
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引用次数: 0

摘要

控制分子薄润滑剂的动力学行为是硬盘驱动器磁头磁盘接口设计的关键技术。分子薄润滑膜的直接可视化在研究润滑膜的补充或保留等动力学特性方面是有用的。为了满足这一需求,我们证明了椭圆显微镜可以提供亚纳米厚度分辨率的实时可视化。本文提出了一种测量润滑油膜厚度的方法。在该方法中,从偏振光片的偏振光角得到光从被膜覆盖区域和未被膜覆盖区域反射的相位差;然后根据相位差计算厚度。从理论上和实验上验证了该方法的可行性。实验结果表明,分子薄润滑油的测量误差小于0.2 nm。该方法提供了分子薄润滑剂的实时定量成像,可为高密度hdd的hdi设计提供有用的信息。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Measurement of thickness of molecularly thin lubricant film by using ellipsometric microscopy
Controlling the kinetic behaviors of molecularly thin lubricant is a key technology for designing head-disk interfaces (HDIs) of hard disk drives (HDDs). Direct visualization of molecularly thin lubricant films is useful in investigating kinetic properties such as replenishment or retention of thin lubricant films. To meet this demand, we demonstrated that the ellipsometric microscope can provide real-time visualization with a sub-nm thickness resolution. In this paper, we present a method of measuring the thickness of the lubricant film. In this method, the phase difference between the lights reflected from the film-covered and uncovered regions of the disk is obtained from the polarizer angles; then the thickness is calculated from the phase difference. We verified the feasibility of the method theoretically and experimentally. Measurement error of less than 0.2 nm was experimentally achieved for molecularly thin lubricants. This method provides real-time and quantitative imaging of molecularly thin lubricants and can provide useful information for designing HDIs for high-density HDDs.
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