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Possible design and fabrication approach for the optics of the 25-mtelescope,

机译:25米望远镜光学系统的可能设计和制造方法,

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Abstract: The optical prescription of the primary mirror of an astronomical telescope is an essential design driver, with major implications on cost and complexity. The sheer size of an alt-az 25-m class telescope emphasizes the need for a short focal ratio of the primary mirror. The optical solution for the 25-m telescope is that of a 4-mirror axial design. Cost and fabrication constraints require the segmented primary mirror to be spherical; on similar grounds, we conclude that the same statement most likely applies to the secondary mirror as well. This makes the correction of spherical aberration and field aberrations comparatively more complex than with a 2-mirror Ritchey- Chretien design, and the very high asphericity of the fourth mirror will constrain the minimal achievable focal ratio of the primary mirror. A parametric study will be presented, showing the available field of view and the difficulty of fabrication of the optics of the telescope as a function of the f/ratio of the primary mirror. The peculiar properties of the design will be reviewed, and it will be shown that the f/ratio of the primary mirror shall most likely fall in the f/1.20 to 1.40 range, as a result of fabrication, testing and alignment constraints. Novel optical testing methods will be proposed as well.!3
机译:摘要:天文望远镜主镜的光学处方是必不可少的设计驱动力,对成本和复杂性有重大影响。 alt-az 25-m级望远镜的巨大尺寸强调了对主镜的短焦比的需要。 25米望远镜的光学解决方案是4镜轴向设计。成本和制造限制要求分段的主镜必须是球形的。基于类似的理由,我们得出结论,同一陈述很可能也适用于辅助镜像。这使球面像差和场像差的校正比2镜Ritchey-Chretien设计要复杂得多,并且第四面镜的非球面度很高,将限制主面镜的最小可实现焦比。将进行参数研究,显示可利用的视场和制造望远镜光学系统的困难,这取决于主镜的f /比率。将审查设计的特殊性能,并表明由于制造,测试和对准约束,主镜的f /比率最有可能落在f / 1.20至1.40范围内。还将提出新颖的光学测试方法!3

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