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Into the Blue: AO Science with MagAO in the Visible

机译:走进蓝色:可见与MagAO的AO科学

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We review astronomical results in the visible (λ<1μm) with adaptive optics. Other than a brief period in the early 1990s, there has been little astronomical science done in the visible with Adaptive Optics until recently. The most productive large telescope visible AO system to date is our 6.5m Magellan telescope AO system (MagAO). MagAO is an advanced Adaptive Secondary AO system at the Magellan 6.5m in Chile. This secondary has 585 actuators with < 1 msec response times (0.7 ms typically). We use a pyramid wavefront sensor. The relatively small actuator pitch (~23 cm/subap) allows moderate Strehls to be obtained in the visible (0.63-1.05 microns). We use a CCD AO science camera called "VisAO". On-sky long exposures (60s) achieve <30mas resolutions, 30% Strehls at 0.62 microns (r') with the VisAO camera in 0.5" seeing with bright R < 9 mag stars. These relatively high visible wavelength Strehls are made possible by our powerful combination of a next generation ASM and a Pyramid WFS with 378 controlled modes and 1000 Hz loop frequency. We'll review the key steps to having good performance in the visible and review the exciting new AO visible science opportunities and refereed publications in both broad-band (r,i,z,Y) and at Halpha for exoplanets, protoplanetary disks, young stars, and emission line jets. These examples highlight the growing power of visible AO to probe circumstellar regions/spatial resolutions that would otherwise require much larger diameter telescopes with classical infrared AO cameras.
机译:我们使用自适应光学器件在可见光范围内(λ<1μm)审查天文结果。除了1990年代初期的短暂时期外,直到最近,利用自适应光学技术在可见光领域的研究还很少。迄今为止,生产力最高的大型望远镜可见AO系统是我们的6.5m麦哲伦望远镜AO系统(MagAO)。 MagAO是位于智利麦哲伦6.5m的先进的自适应辅助AO系统。该次级具有585个执行器,响应时间<1毫秒(典型值为0.7毫秒)。我们使用金字塔波前传感器。相对较小的致动器螺距(〜23 cm / subap)可以在可见光(0.63-1.05微米)内获得适度的Strehls。我们使用称为“ VisAO”的CCD AO科学相机。通过0.5“的VisAO相机,在天空中长时间曝光(60s)可以实现<30mas的分辨率,在0.62微米(r')时30%的Strehls,同时看到明亮的R <9 mag星。这些相对较高的可见光波长Strehls可以通过我们的下一代ASM和具有378种受控模式和1000 Hz环路频率的金字塔式WFS的强大结合,我们将回顾在可见光领域具有良好性能的关键步骤,并回顾令人兴奋的AO可见光科学的新机遇,并在这两种广泛的领域中参考出版物波段(r,i,z,Y)和系外行星,原行星盘,年轻恒星和发射线射流的Halpha波段,这些例子凸显了可见AO探测星际区域/空间分辨率的能力越来越强,否则它们将需要更大的空间直径望远镜和经典的红外AO相机。

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