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A High Precision 2-D Angle Measurement Interferometer

机译:高精度2-D角度测量干涉仪

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摘要

Fourier transform method and phase shift method are widely used to analyze fringe patterns to obtain surface profiles. In these ordinary fringe analysis methods, tilt or angle in the measured surface is often cancelled by certain operations. On the other hand, tilt can be considered as part of the measured surface, and obtained by fitting the measured surface profile with a line or plane. Therefore, we proposed a high-precision angle measurement method using fringe analysis techniques. In this paper, a 2-dimensional angular measurement interferometer based on a Mirau microscope objective is constructed to realize the proposed method, and the output curve of the measurement system is calibrated using a high-resolution autocollimator and a PZT driven lever system as the references. Fringe patterns obtained by the experiments are analyzed by both of the Fourier transform method and phase shift method, and the experimental results are compared with each other. Furthermore, the characteristics of the measurement system, including stability, resolution, and accuracy are evaluated and analyzed. Experiments verified that it could achieve both a wide measurement range of over +-2160 arcsec (+-0.6Degree) and a high angular resolution of 0.01 arcsec, simultaneously.
机译:傅里叶变换方法和相移方法广泛用于分析条纹图案以获得表面型材。在这些普通的边缘分析方法中,测量表面中的倾斜或角度通常被某些操作取消。另一方面,倾斜可以被认为是测量表面的一部分,并通过用线或平面安装测量的表面轮廓而获得。因此,我们提出了一种使用条纹分析技术的高精度角度测量方法。在本文中,构造了基于Mirau显微镜物镜的二维角度测量干涉仪以实现所提出的方法,并且使用高分辨率自动调用器和PZT驱动的杆系统作为参考的校准测量系统的输出曲线。通过实验获得的条纹图案通过傅立叶变换方法和相移方法分析,并且实验结果彼此比较。此外,评估和分析测量系统的特性,包括稳定性,分辨率和精度。实验证实,它可以同时实现超过+ -2160弧度(+ -0.6°C的宽度测量范围和高角度分辨率。

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