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The effects of aberrations (low order and quilting ) on the performance of the all-composite design for Herschel space observatory

机译:像差(低阶和绗缝)对Herschel空间天文台的全复合设计性能的影响

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The effects of specific aberrations on the optical performance of the all-composite design for the Herschel Space Observatory are examined. A review of the all-composite design for the large aperture (3.5 m) telescope that satisfies the target specifications is presented. Cyrogenic experiments with a carbon fiber reinforced polymer (CFRP) 2 m demonstration mirror have yielded empirical bounds on the high- and low-order spatial frequency aberrations that will be anticipated in the full 3.5 m Ritchey-Chretien telescope design. Detailed analysis is presented on the effect of the low order aberrations of the primary mirror on the system wavefront error and encircled energy. Predictable limits of correction via low order shaping of the secondary mirror are described. The impact of higher order surface errors on the encircled energy and the stray light will also be presented. Comments are made regarding the impact of the optical prescription and CRFP design on flight telescope testing.
机译:研究了特定像差对Herschel空间天文台的全复合设计的光学性能的影响。介绍了满足目标规格的大孔径(3.5米)望远镜全复合设计的综述。具有碳纤维增强聚合物(CFRP)2 M示范镜的化学实验在全面的3.5米Ritchey-Chretien望远镜设计中产生了高阶和低阶空间频率像差上的经验界。在系统波前误差和环绕能量的初级镜子上的低阶像差效果提出了详细分析。描述了通过次要镜的低阶整形的可预测校正限制。还将呈现高阶表面误差对环绕能量和杂散光的影响。评论是关于光学处方和CRFP设计对飞行望远镜测试的影响。

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