Experimental investigation of third-order binodal astigmatism in Nodal Aberration Theory (NAT) with a Cassegrain system

Ö. Karci, Eray Arpa, M. Ekinci, J. Rolland
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引用次数: 1

Abstract

In this study, we present a simulation and experimental investigation of binodal astigmatism in NAT with a Cassegrain telescope. The high-precision telescope system utilizes a piezo-actuated flexural mechanism to introduce secondary mirror misalignments and generate aberrations intentionally. The induced aberrations are measured interferometrically and quantified for a grid of field points on the image plane of the telescope. For this purpose, a coma-free pivot point of the secondary mirror was simulated for isolating the binodal astigmatism field response. A simulation of binodal astigmatism was generated using a real ray trace model of the Cassegrain system and analyzed to compare to the experimental results. The experimental results were consistent with the simulations, hence experimentally validating NAT for binodal astigmatism for the first time.
卡塞格伦系统节点像差理论中三阶双节像差的实验研究
在本研究中,我们用卡塞格林望远镜模拟和实验研究了NAT的双节像散。高精度望远镜系统利用压电驱动的弯曲机构来引入二次镜位错并产生故意的像差。对望远镜成像平面上的场点网格进行了干涉测量和量化。为此,模拟了副镜的无彗枢轴点,以隔离双节散光场响应。利用Cassegrain系统的真实射线迹线模型对双节像散进行了仿真,并与实验结果进行了对比分析。实验结果与模拟结果一致,首次在实验上验证了NAT对双节像散的影响。
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