Bai Xiaoquan, Xu Boqian, Ju Guohao, Ma Hongcai, Zhang Chunyue, Wang Shuaihui, Xu Shuyan
Appl Opt. 2021 Jul 20;60(21):6199-6212. doi: 10.1364/AO.431908.
This paper discusses compensation strategies for the aberration fields caused by the error in the radius of curvature (ROC) of the primary mirror (PM) in pupil-offset off-axis three-mirror anastigmatic (TMA) astronomical telescopes. Based on the nodal aberration theory framework, the specific astigmatic and coma aberrations of the off-axis three-mirror system in the presence of the ROC error of the PM are derived. It is demonstrated that some field-dependent aberration components can be induced by ROC error in the off-axis TMA telescopes, apart from the dominating field-constant aberration terms. To reduce the influence of the ROC error on the aberration fields, we propose two aberration compensation strategies: adjusting the position of the PM and introducing axial misalignment of the secondary mirror (SM). Through theoretical analysis and simulations, we conclude that the compensation strategy of changing the axial position of the PM can make the aberration distribution close to the nominal state; the compensation strategy of axially adjusting the SM can make the aberration distribution meet the observation requirements, which is more suitable for space applications. We also discuss compensating the effect of the ROC error using lateral misalignments.
本文讨论了在离轴偏置三镜消像散(TMA)天文望远镜中,主镜(PM)曲率半径(ROC)误差所引起的像差场的补偿策略。基于节点像差理论框架,推导了在存在主镜ROC误差情况下离轴三镜系统的具体像散和彗差像差。结果表明,除了占主导地位的场常数像差项外,离轴TMA望远镜中的ROC误差还会引起一些与视场相关的像差分量。为了减小ROC误差对像差场的影响,我们提出了两种像差补偿策略:调整主镜的位置和引入副镜(SM)的轴向失调。通过理论分析和仿真,我们得出结论:改变主镜轴向位置的补偿策略可使像差分布接近标称状态;轴向调整副镜的补偿策略可使像差分布满足观测要求,更适合空间应用。我们还讨论了利用横向失调来补偿ROC误差的影响。