Phasing segmented mirror telescopes with adaptive optics corrected images

M. Lamb, C. Correia, S. Sivanandam, J. Delorme
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引用次数: 0

Abstract

Residual phasing errors from segmented mirror telescopes can significantly inhibit the performance of an adaptive optics (AO) system. One approach to quantify these errors utilizes the imaging capabilities of a telescope’s instrument suite; quantification requires images that have observed the primary, therefore these images should be on-sky and AO-corrected in the absence of a source that views the primary. An image-based phase estimation technique that can potentially make this quantification is Phase Diversity, whereby focussed/defocussed images of a bright star are compared with models to estimate phase. Traditional use of this technique with on-sky images can be difficult due to atmospheric evolution between image pairs. This is further compounded due to both NCPA and the partial AO correction of phasing errors persisting in on-sky images. Here we propose a technique that can mitigate the atmospheric effects, estimate the NCPA and assess phasing errors under partial AO correction.
具有自适应光学校正图像的相位分段反射镜望远镜
分割镜望远镜产生的相位误差会严重影响自适应光学系统的性能。量化这些误差的一种方法是利用望远镜仪器套件的成像能力;量化需要观测到原星的图像,因此这些图像应该在没有观测原星的源的情况下进行天空和ao校正。相位分集是一种基于图像的相位估计技术,可以潜在地实现这种量化,通过将一颗明亮恒星的聚焦/散焦图像与模型进行比较来估计相位。由于图像对之间的大气演变,这种技术在天空图像中的传统使用可能很困难。由于NCPA和部分AO对天空图像中持续存在的相位误差的校正,这进一步复杂化了。在此,我们提出了一种可以减轻大气效应、估计NCPA和评估部分AO校正下相位误差的技术。
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