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Determining the optical constants of read-write sliders during flying-height testing

机译:在飞行高度测试过程中确定读写滑块的光学常数

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Flying-height testers for rigid disk drives employ a transparent glass substrate in place of the magnetic disk and use optical interferometry to measure the flight properties of the read-write slider. Because of the material phase change on reflection, the effective optical constants n and k of the slider play an important role in the measurement. We describe an instrument that determines the optical constants simultaneously with flying height, using polarization interferometry. This in, situ analysis of n and k obviates the need for independent ellipsometry, while avoiding the problematic retract calibration characteristic of traditional flying-height test equipment. The rms uncertainty for n and k are 0.04, resulting in height uncertainties that range from 3 nm for 250-nm flying heights down to 0.5 nm at contact. We verify these results by use of a variety of experimental techniques on both laboratory samples and actual read-write sliders. (C) 1998 Optical Society of America. [References: 33]
机译:刚性磁盘驱动器的飞行高度测试仪采用透明的玻璃基板代替磁盘,并使用光学干涉仪来测量读写滑块的飞行特性。由于反射时材料的相变,滑块的有效光学常数n和k在测量中起着重要作用。我们描述了一种使用偏振干涉仪同时测定光学常数和飞行高度的仪器。 n和k的这种原位分析消除了对独立椭偏仪的需要,同时避免了传统的飞行高度测试设备的缩回校准特性的问题。 n和k的均方根不确定性为0.04,导致高度不确定性范围从250纳米飞行高度的3 nm降低到接触时的0.5 nm。我们通过在实验室样本和实际读写滑块上使用多种实验技术来验证这些结果。 (C)1998年美国眼镜学会。 [参考:33]

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