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Further Improvements of Digital Interferometer

机译:进一步改进数字干涉仪

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Digital interferometry is widely used for evaluating optical surfaces due to its outstanding sub-nanometer accuracy and precision. In this paper, we will summarize its advantages and then describe its applications in industry, especially in both absolute flat and cylindrical surface and measurements. Inner surfaces measurement of cylindrical ring can be achieved without map stitching, by a Fizeau interferometer with a 90°cone. The alignment of this arrangement, however, is very crucial to the accomplishment. Any small misplacement of 90° cone or hollow cylinder from their ideal settings may result in large measurement errors. These errors are not intuitive and hard to be removed if their origins are not well understood. In other words, it is very important to know how these measurement errors are generated from the optical misalignment in order to eliminate them. Transmission flat has normally 1/20 wavelength PV. However, when a flat surface under test is better or much better than the transmission flat, we need the absolute flat measurement. We developed a new method to be easily able to achieve the accuracy of 1/100 wavelength PV. We have dedicated our efforts to do so. The theoretical analysis, computer simulations, and experimental validation are presented in the paper.
机译:由于其出色的子纳米精度和精度,数字干涉测量广泛用于评估光学表面。在本文中,我们将总结其优点,然后描述其在工业中的应用,特别是在绝对平坦和圆柱形表面和测量中。通过具有90°锥体的不同图示,可以在没有地图缝合的情况下实现圆柱形环的内表面测量。然而,这种布置的对准对实现来说是至关重要的。从其理想设置的任何小于90°锥形或空心缸的误差可能会导致大量测量误差。如果他们的起源没有很好地理解,这些误差并不直观且难以移除。换句话说,知道如何从光学错位生成这些测量误差以消除它们是非常重要的。变速器平面具有通常为1/20波长PV。然而,当经过测试的平坦表面比传动平坦更好或更好时,我们需要绝对平坦的测量。我们开发了一种轻松能够实现1/100波长PV的准确性的新方法。我们致力于这样做。本文提出了理论分析,计算机模拟和实验验证。

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