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Computation of astigmatic and trefoil figure errors and misalignments for two-mirror telescopes using nodal-aberration theory

机译:利用节点像差理论计算两镜望远镜的像散和三翼图形误差和失准

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In active optics systems, one concern is how to quantitatively separate the effects of astigmatic and trefoil figure errors and misalignments that couple together in determining the total aberration fields when wavefront measurements are available at only a few field points. In this paper, we first quantitatively describe the impact of mount-induced trefoil deformation on the net aberration fields by proposing a modified theoretical formulation for the field-dependent aberration behavior of freeform surfaces based on the framework of nodal aberration theory. This formulation explicitly expresses the quantitative relationships between the magnitude of freeform surfaces and the induced aberration components where the freeform surfaces can be located away from the aperture stop and decentered from the optical axis. On this basis, and in combination with the mathematical presentation of nodal aberration theory for the effects of misalignments, we present the analytic expressions for the aberration fields of two-mirror telescopes in the presence of astigmatic primary mirror figure errors, mount-induced trefoil deformations on both mirrors, and misalignments. We quantitatively separate these effects using the analytical expressions with wavefront measurements at a few field points and pointing errors. Valuable insights are provided on how to separate these coupled effects in the computation process. Monte Carlo simulations are conducted to demonstrate the correctness and accuracy of the analytic method presented in this paper. (C) 2016 Optical Society of America
机译:在有源光学系统中,当波前测量仅在几个视场点可用时,如何量化散光和三叶形图形误差和未对准的影响是一个值得关注的问题,这些误差和未对准在确定总像差场时会耦合在一起。在本文中,我们首先基于节点像差理论的框架,针对自由曲面的场相关像差行为提出了一种改进的理论公式,从而定量描述了座架引起的三叶形变形对净像差的影响。该公式明确表达了自由曲面的大小与感应像差分量之间的定量关系,其中自由曲面可以远离孔径光阑并偏离光轴。在此基础上,结合节点像差理论对失调影响的数学表示,我们给出了在存在散光主镜像差,安装座引起的三叶形变形的情况下,两镜望远镜的像差场的解析表达式。在两个镜子上,以及未对准。我们使用解析表达式在几个场点和指向误差处进行波前测量,将这些影响定量分离。提供了有关如何在计算过程中分离这些耦合效应的宝贵见解。进行了蒙特卡洛模拟,以证明本文提出的分析方法的正确性和准确性。 (C)2016美国眼镜学会

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