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Shack-Hartmann mask/pupil registration algorithm for wavefront sensing in segmented mirror telescopes

机译:用于分段镜望远镜波前感测的Shack-Hartmann面罩/瞳孔配准算法

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摘要

Shack-Hartmann wavefront sensing in general requires careful registration of the reimaged telescope primary mirror to the Shack-Hartmann mask or lenslet array. The registration requirements are particularly demanding for applications in which segmented mirrors are phased using a physical optics generalization of the Shack-Hartmann test. In such cases the registration tolerances are less than 0.1% of the diameter of the primary mirror. We present a pupil registration algorithm suitable for such high accuracy applications that is based on the one used successfully for phasing the segments of the Keck telescopes. The pupil is aligned in four degrees of freedom (translations, rotation, and magnification) by balancing the intensities of subimages formed by small subapertures that straddle the periphery of the mirror. We describe the algorithm in general terms and then in the specific context of two very different geometries: the 492 segment Thirty Meter Telescope, and the seven "segment" Giant Magellan Telescope. Through detailed simulations we explore the accuracy of the algorithm and its sensitivity to such effects as cross talk, noise/counting statistics, atmospheric scintillation, and segment reflectivity variations.
机译:通常,Shack-Hartmann波前感测需要将重新成像的望远镜主镜仔细对准Shack-Hartmann掩模或小透镜阵列。对于使用Shack-Hartmann测试的物理光学泛化对分段镜进行相位控制的应用,注册要求特别苛刻。在这种情况下,对位公差小于主镜直径的0.1%。我们提出了一种适合这种高精度应用的瞳孔配准算法,该算法基于成功用于定相凯克望远镜各段的算法。通过平衡跨镜面外围的小子孔形成的子图像的强度,瞳孔以四个自由度(平移,旋转和放大)对齐。我们先概括地描述算法,然后再在两种截然不同的几何结构的特定上下文中进行描述:492段三十米望远镜和七个“段”巨型麦哲伦望远镜。通过详细的仿真,我们探索了算法的准确性及其对串扰,噪声/计数统计,大气闪烁和分段反射率变化等影响的敏感性。

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