Numerical evaluation of an off-axis Point Spread Function reconstruction from the Woofer/Tweeter Adaptive Optics system

O. Keskin
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Abstract

This paper presents the derivation, implementation and testing of an off-axis Point Spread Function (PSF) reconstruction technique for the applied numerical model of the University of Victoria's dual Deformable Mirror (DM) Woofer-Tweeter (W/T) Adaptive Optics (AO) system. The methodology has been tested; it is based on the data saved by the AO system during the science exposure, and on the analytical expression of the anisoplanatic transfer function. This data is later used in the post-processing stage to reconstruct the off-axis PSF that degrades the AO system's performance at greater angular distances from the guide star (GS). Although the results are unique to the UVic W/T AO bench model, the proposed PSF reconstruction methodology will be applicable to other dual DM systems and to multi DM AO systems.
低/高音自适应光学系统离轴点扩散函数重建的数值评估
本文介绍了维多利亚大学双变形镜(DM)低音炮(W/T)自适应光学(AO)系统应用数值模型的离轴点扩散函数(PSF)重建技术的推导、实现和测试。该方法已经过检验;它基于AO系统在科学暴露过程中保存的数据,并基于各向异性传递函数的解析表达式。该数据随后在后处理阶段用于重建离轴PSF,该PSF在与导星(GS)的较大角距离时降低了AO系统的性能。虽然UVic W/T AO台架模型的结果是独一无二的,但所提出的PSF重建方法将适用于其他双DM系统和多DM AO系统。
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