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Alignment analysis of four-mirror spherical aberration correctors

机译:四镜球面像差校正器的对准分析

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Telescopes use primary mirrors with spherical shape to reduce the cost of the mirror fabrication and to allow the mirror to operate at fixed elevation. These advantages become significant as the size of the telescope grows. However, the disadvantage of the spherical primary is a large amount of spherical aberration which needs to be corrected. We present an analysis of alignment issues for four-mirror spherical aberration correctors for spherical primary mirror telescopes. The sensitivities of image quality across the field (in terms of spot size) to mirror misalignments are found. These sensitivities are useful in choosing the tolerances for the mechanical assembly holding the corrector. A singular value decomposition of the sensitivity matrix shows the combination of element motions that result in orthogonal aberration modes. Studying these combinations of modes and misalignments can lead to a conceptual understanding of the system, which aids in the initial and operational alignment of the spherical aberration corrector.
机译:望远镜使用球面主镜以降低镜面制造成本并允许镜面在固定高度运行。随着望远镜尺寸的增加,这些优势变得尤为重要。但是,球面原色的缺点是需要校正大量的球面像差。我们对球面主镜望远镜的四镜球面像差校正器的对准问题进行了分析。发现整个视场的图像质量(以光点大小表示)对镜面未对准的敏感性。这些敏感性在选择容纳校正器的机械组件的公差时很有用。灵敏度矩阵的奇异值分解显示了导致正交像差模式的元素运动的组合。研究模式和未对准的这些组合可以导致对系统的概念性理解,这有助于球面像差校正器的初始和操作对准。

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