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Misalignment-induced nodal aberration fields in two-mirror astronomical telescopes

机译:两镜天文望远镜中未对准引起的节点像差场

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We present the effects of misalignments on the field dependence of the third-order aberration fields of traditional, two-mirror astronomical telescopes in the context of nodal aberration theory, which we believe is the most general and extensible framework for describing and improving on-station performance. While many of the advantages of nodal aberration theory, compared to other, often power series expansion-based descriptions of misalignment effects on aberrations, become particularly important when analyzing telescopes with more than two mirrors, or in the presence of figure errors; this paper aims to provide and demonstrate the fundamental concepts needed to fully describe the state of correction of misaligned two-mirror telescopes. Importantly, it is shown that the assumption that perfect performance on axis ensures a fully aligned telescope is false, and we demonstrate that if Ritchey-Chretien telescopes are aligned for zero coma on axis as the sole criterion, formidable misalignments will likely remain, leading to image quality degradation, particularly beyond midfield caused by astigmatism with binodal field dependence (i.e., astigmatism goes to zero at two points in the field).
机译:在节点像差理论的背景下,我们介绍了失准对传统的两镜天文望远镜三阶像差场的场依存性的影响,我们认为这是描述和改进测站的最通用,可扩展的框架性能。与其他通常基于幂级数展开的,对像差未对准效应的描述相比,节点像差理论的许多优点变得尤其重要,当分析具有两个以上反射镜的望远镜或存在图差时,这一点尤为重要。本文旨在提供和演示基本描述完整描述未对准的两镜望远镜的校正状态所需的基本概念。重要的是,证明了轴上的完美性能可确保望远镜完全对准的假设是错误的,并且我们证明,如果将Ritchey-Chretien望远镜对准轴上的零彗差作为唯一标准,则可能会存在严重的对准误差,从而导致图像质量下降,特别是超出因散光而产生的中场影响,且散光场取决于双轴场(即,散光在场中的两个点变为零)。

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