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Fabrication of SiC aspheric mirrors with low mid-spatial error

机译:具有低中间空间误差的SiC非球面镜的制造

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Recent experience with finishing off-axis parabolas and other conic surfaces is demonstrated by some examples that illustrate surface accuracy - not only in terms of traditional metrics, but also in terms of specified ranges of spatial frequency. Particular attention is given to the topic of interferometric metrology, and the extent to which we can effectively characterize mid-spatial frequency errors. The presence of mid-spatial errors can appear even more dominant in hard ceramics like SiC as compared with glass - reasons for this are suggested. This paper will discuss how controlled force grinding, robotic polishing, and surface smoothing can be employed to minimize and mitigate mid-spatial errors in fast silicon carbide aspheric mirrors. Recent experience and results are presented on two SiC mirrors finished by Aperture Optical Sciences Inc.
机译:一些示例说明了表面精度,这不仅显示了传统度量标准,而且还显示了空间频率的指定范围,这些示例证明了精加工离轴抛物线和其他圆锥形表面的最新经验。特别要注意的是干涉测量的主题,以及我们可以有效表征中空间频率误差的程度。与玻璃相比,中空误差的存在在像SiC这样的硬质陶瓷中似乎更为占主导地位-建议这样做。本文将讨论如何在快速碳化硅非球面反射镜中采用受控力研磨,机器人抛光和表面平滑来最小化和减轻中间空间误差。最新的经验和结果在Aperture Optical Sciences Inc.完成的两块SiC反射镜上进行了介绍。

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