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DIRECT VISUALIZATION OF MOLECULARLY THIN LUBRICANT FILMS ON MAGNETIC DISKS BY ELLIPSOMETRIC MICROSCOPY WITH A WHITE LIGHT SOURCE

机译:用白光的椭偏显微镜直接观察磁碟上的分子稀薄膜

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摘要

We demonstrated the direct visualization of molecularly thin lubricant films on magnetic disks with a thickness resolution of 0.1 nm by using an ellipsometric microscope with a white light source. It was able to reduce the optical interference noise that arises in conventional laser-based ellipsometric microscopes, and to provide a larger SNR by a factor of about 6 compared to a laser-based ellipsometric microscope. The wavelength width should be given the first priority in designing a white light source ellipsometric microscope, and the width should be determined after considering the required coherence length and thickness resolution. Theoretical calculations indicate that a wavelength width of less than 10 nm can provide a thickness resolution of 0.1 nm. A white light source ellipsometric microscope can provide real-time visualization of a molecularly thin lubricant film with a thickness resolution of 0.1 nm, which is useful in investigating the kinetic behavior of molecularly thin lubricant films on magnetic disks.
机译:我们通过使用椭圆偏振显微镜和白光源演示了磁盘上分子润滑剂薄膜的直接可视化,厚度分辨率为0.1 nm。与基于激光的椭偏显微镜相比,它能够减少在传统的基于激光的椭偏显微镜中产生的光学干扰噪声,并提供约6倍的更大SNR。在设计白色光源椭圆偏振显微镜时,应优先考虑波长宽度,并且应在考虑所需的相干长度和厚度分辨率后确定波长宽度。理论计算表明,小于10 nm的波长宽度可以提供0.1 nm的厚度分辨率。白光源椭圆偏振显微镜可以实时观察厚度分辨率为0.1 nm的分子润滑膜,这对于研究磁盘上分子润滑膜的动力学行为很有用。

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