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Computer aided alignment using Zernike coefficients

机译:使用Zernike系数的计算机辅助对齐

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The high performance optical system is generally not easy to align. Particularly, if there are off-axis optical components in the system, the alignment is a very serious problem. Many researchers have reported that using sensitivity of some Zernike coefficients is useful in alignment. However, this method has a weak point in that it generates an accurate result only when the misalignments of component are located within the range where the sensitivities of coefficients are linear to the amount of misalignment. We developed the new method which allows larger misalignment at the early stage of alignment. It is to minimize the merit function of Zernike coefficients rather than to use sensitivities of coefficients. In this paper, we analyzed the cons and pros of conventional alignment method and our own method and demonstrated the accuracy and flexibility of our method by aligning the diameter 900 mm Cassegrain type collimator. Even though there was more than 1 mm decenter error, we could align the secondary mirror to the nominal position with just two trials.
机译:高性能光学系统一般是不容易的对齐。特别是,如果有离轴系统中的光学部件,对准是一个很严重的问题。许多研究人员报告说,使用一些泽尼克系数的敏感性是对准有用。然而,该方法具有在它所生成仅当部件的未对准位于何处系数的灵敏度是线性未对准的量的范围内的精确结果的薄弱点。我们开发的新方法,它允许较大的偏差,在对齐的早期阶段。这是尽量减少泽尼克系数的评价函数,而不是使用系数的敏感性。在本文中,我们分析了利弊和常规对准方法的优点和我们自己的方法和通过对准直径900毫米卡塞格伦型准直器展示了我们的方法的准确性和灵活性。尽管有超过1mm的偏心误差,我们可以校准副镜到只有两个试验的名义位置。

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