论文标题

Chara Array自适应光学:复杂的操作软件和性能

CHARA Array adaptive optics: complex operational software and performance

论文作者

Anugu, Narsireddy, Brummelaar, Theo ten, Turner, Nils H., Anderson, Matthew D., Bouquin, Jean-Baptiste Le, Sturmann, Judit, Sturmann, Laszlo, Farrington, Chris, Vargas, Norm, Majoinen, Olli, Ireland, Michael J., Monnier, John D., Mourard, Denis, Schaefer, Gail, Gies, Douglas R., Ridgway, Stephen T., Kraus, Stefan, Petit, Cyril, Tallon, Michel, Lim, Caroline B., Berio, Philippe

论文摘要

Chara阵列是世界上最长的基线光学干涉仪。它以自然的视力运行,它在恒星成像,二进制直径和恒星直径的区域中提供了具有里程碑意义的子米利亚克秒。但是,为了实现诸如年轻恒星物体和活跃银河核等微弱靶标的雄心勃勃的观察,需要更高的灵敏度。为此,开发了自适应光学器件以纠正每个望远镜和梁组合机实验室之间的大气湍流和非通行路径像差。本文描述了AO软件及其集成到Chara系统中。我们还报告了初始的天上测试,这些测试表明,通过敏感性增长并扩展有用的观察时间,在较差的看见条件下,科学吞吐量增加了。我们的6个望远镜和12个AO系统具有数十个关键对准和控制循环在操作中构成挑战。我们描述了我们的方法,使单个科学家能够操作整个系统。

The CHARA Array is the longest baseline optical interferometer in the world. Operated with natural seeing, it has delivered landmark sub-milliarcsecond results in the areas of stellar imaging, binaries, and stellar diameters. However, to achieve ambitious observations of faint targets such as young stellar objects and active galactic nuclei, higher sensitivity is required. For that purpose, adaptive optics are developed to correct atmospheric turbulence and non-common path aberrations between each telescope and the beam combiner lab. This paper describes the AO software and its integration into the CHARA system. We also report initial on-sky tests that demonstrate an increase of scientific throughput by sensitivity gain and by extending useful observing time in worse seeing conditions. Our 6 telescopes and 12 AO systems with tens of critical alignments and control loops pose challenges in operation. We describe our methods enabling a single scientist to operate the entire system.

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