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Lucky imaging and adaptive optics on 10-m class telescopes: a real promise for diffraction limited imaging in the visible?

机译:在10米级望远镜上的幸运成像和自适应光学器件:在可见的衍射有限成像的实际承诺?

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Traditionally thought as alternatives of each other, it has not been until very recently when Adaptive Optics (AO) and lucky imaging (LI) have been put to work together to achieve angular resolutions in the visible wavelengths comparable to those acquired with an ideal telescope. In this work the mutual benefits of combining fast frame selection (a.k.a. Lucky Imaging, LI) with Adaptive Optics (AO) on a 10-m class telescope are investigated by means of detailed Monte-Carlo numerical simulations. We investigate the expected image quality by looking at the Strehl Ratio (SR) at the optical R and I bands (around 650 and 800nm, respectively) and the potential of the technique to conduct high-contrast imaging. From our numerical simulations we are able to assess whether there is a net gain in the high-contrast capabilities when applying wavelet-based filtering techniques. As a test bench for what we should expect by moving on a 10-m class telescope we present recent results achieved with AO+LI at the 4-m William Herschel Telescope (WHT) by looking at the brown dwarf binary GJ569Bab.
机译:传统上认为作为彼此的替代方案,直到最近,当自适应光学(AO)和幸运成像(LiL)共同努力以实现与具有理想望远镜所获得的可见波长的角度分辨率相当。在这项工作中,通过详细的Monte-Carlo数值模拟研究了在10米级望远镜上使用自适应光学(AO)的快速帧选择(A.K.A.幸运成像,LI)的互利。我们通过观察光学R和I带(分别为650和800nm)的STHL比(SR)和进行高对比度成像的电位来研究预期的图像质量。从我们的数值模拟中,我们能够在应用基于小波的过滤技术时评估是否存在高对比度的净增益。作为一种测试台,通过搬到一个10米的望远镜,我们应该通过观​​察棕色矮人二进制GJ569bab,目前在4米威廉·赫歇尔望远镜(WHT)上用AO + Li实现了最近的结果。

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