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Cophasing techniques for Extremely Large Telescopes

机译:适用于极大的望远镜的开具技术

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The current designs of the majority of ELTs envisage that at least the primary mirror will be segmented. Phasing of the segments is therefore a major concern, and a lot of work is underway to determine the most suitable techniques. The techniques which have been developed are either wave optics generalizations of classical geometric optics tests (e.g. Shack-Hartmann and curvature sensing) or direct interferometric measurements. We present a review of the main techniques proposed for phasing and outline their relative merits. We consider problems which are specific to ELTs, e.g. vignetting of large parts of the primary mirror by the secondary mirror spiders, and the need to disentangle phase errors arising in different segmented mirrors. We present improvements in the Shack-Hartmann and curvature sensing techniques which allow greater precision and range. Finally, we describe a piston plate which simulates segment phasing errors and show the results of laboratory experiments carried out to verify the precision of the Shack-Hartmann technique.
机译:目前大多数允许设想的目前的设计至少是主要镜子将被分割。因此,分阶段的阶段是一个主要问题,并且正在进行大量的工作来确定最合适的技术。已经开发的技术是经典几何光学测试的波光学概括(例如,Shack-Hartmann和曲率传感)或直接干涉测量。我们介绍了逐步阶平和概述其相对优点的主要技术的审查。我们考虑特定于唯一的问题,例如,由二级镜蜘蛛的初级镜子的大部分大部分的渐晕,以及在不同分段镜中出现的解开相位误差的需要。我们在棚屋和曲率传感技术中提出了改进,允许更高的精度和范围。最后,我们描述了一种活塞板,它模拟了分阶段阶段误差并显示了实验室实验的结果,以验证Shack-Hartmann技术的精度。

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