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Getting lucky with adaptive optics: fast adaptive optics image selection in the visible with a large telescope

机译:借助自适应光学装置走运:使用大型望远镜在可见光中快速选择自适应光学图像

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摘要

We describe the results from a new instrument which combines Lucky Imaging and adaptive optics (AO) to give the first routine direct diffraction-limited imaging in the visible on a 5 m telescope. With fast image selection and alignment behind the Palomar AO system we obtained Strehl ratios of 5%-20% at 700 nm in a typical range of seeing conditions, with a median Strehl of approximately 12% when 10% of the input frames are selected. At wavelengths around 700 nm the system gave diffraction-limited 35 mas full width at half-maxima (FWHMs). At 950 nm the output Strehl ratio was as high as 36% and at 500 nm the FWHM resolution was as small as 42 mas, with a low Strehl ratio but with resolution improved by a factor of ~20 compared to the prevailing seeing. To obtain wider fields we also used multiple Lucky Imaging guide stars in a configuration similar to a ground layer AO system. With eight guide stars but very undersampled data we obtained 300 mas resolution across a 30" × 30" field of view in the i' band.ud
机译:我们描述了一种结合了幸运成像和自适应光学(AO)的新仪器的结果,该仪器在5 m望远镜的可见光范围内给出了第一个常规的直接衍射限制成像。通过在Palomar AO系统后面进行快速的图像选择和对齐,我们在典型的观看条件范围内在700 nm处获得了5%-20%的斯特列尔比,当选择10%的输入帧时,斯特列尔的中值约为12%。在约700 nm的波长下,系统在半最大值(FWHM)处产生了衍射极限的35 mas全宽。在950 nm处,输出Strehl比率高达36%,在500 nm处,FWHM分辨率小至42 mas,Strehl比率低,但与目前的情况相比,分辨率提高了约20倍。为了获得更宽的视野,我们还使用了与地面AO系统类似的配置的多个Lucky Imaging导星。在有八颗引导星但采样率非常低的情况下,我们在i'波段的30“×30”视场中获得了300 mas分辨率。

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