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Robo-AO: Initial results from the first autonomous laser guide star adaptive optics instrument

机译:Robo-AO:第一台自主激光制导星自适应光学仪器的初步结果

摘要

Large surveys, such as the Kepler mission and Palomar Transient Factory, are discovering upwards of thousands of objects which require further characterization at angular resolutions significantly finer than normally allowed by atmospheric seeing. The demands on precious space-based observatories (i.e. Hubble Space Telescope) and large telescopes with adaptive optics (AO) systems (i.e. Keck, VLT, Gemini) leave them generally unavailable for high angular resolution surveys of more than a few hundred targets at a time. To address the gap between scientific objects and available telescopes, we have developed Robo-AO, the first robotic laser AO system, as an economical and efficient imaging instrument for the more readily available 1-3 m class telescopes. The Robo-AO system system demonstrates angular resolutions approaching the visible diffraction limit of the Palomar 60-inch telescope. Observations of over 200 stellar objects per night have routinely been performed, with target-to-target observation overheads of less than 1.5 minutes. Scientific programs requiring high-resolution follow-up characterization of several thousands of targets can thus be executed in mere weeks, and Robo-AO has already completed the three largest AO surveys to date.
机译:开普勒任务和Palomar瞬态工厂等大型调查正在发现成千上万个物体,这些物体需要以比通常的大气观测所允许的分辨率更好的角度分辨率进行进一步表征。对珍贵的天基天文台(即哈勃太空望远镜)和带有自适应光学(AO)系统的大型望远镜(即凯克,VLT,双子座)的需求使得它们通常无法用于在一个位置上对数百个目标进行高角度分辨率测量时间。为了解决科学对象与可用望远镜之间的差距,我们开发了Robo-AO,这是第一个机器人激光AO系统,它是一种经济高效的成像仪器,适用于更容易获得的1-3 m级望远镜。 Robo-AO系统系统演示了接近帕洛玛60英寸望远镜可见衍射极限的角分辨率。常规上每晚执行超过200个恒星物体的观测,目标到目标的观测开销不到1.5分钟。因此,可以在短短几周内执行需要对数千个目标进行高分辨率跟踪特征描述的科学计划,并且Robo-AO迄今为止已经完成了三个最大的AO调查。

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