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First results on a new PIAA coronagraph testbed at NASA Ames

机译:首次在美国宇航局艾姆斯举行的新pIaa冠状测试试验结果

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摘要

Direct imaging of extrasolar planets, and Earth-like planets in particular, is an exciting but difficult problem requiring a telescope imaging system with 1010 contrast at separations of 100 mas and less. Furthermore, the current NASA science budget may only allow for a small 1-2 m space telescope for this task, which puts strong demands on the performance of the imaging instrument. Fortunately, an efficient coronagraph called the Phase Induced Amplitude Apodization (PIAA) coronagraph has been maturing and may enable Earth-like planet imaging for such small telescopes. In this paper, we report on the latest results from a new testbed at NASA Ames focused on testing the PIAA coronagraph. This laboratory facility was built in 2008 and is designed to be flexible, operated in a highly stabilized air environment, and to complement existing efforts at NASA JPL. For our wavefront control we are focusing on using small Micro-Electro- Mechanical-System deformable mirrors (MEMS DMs), which promises to reduce the size of the beam and overall instrument, a consideration that becomes very important for small telescopes. At time of this writing, we are operating a refractive PIAA system and have achieved contrasts of about 1.2×10-7 in a dark zone from 2.0 to 4.8 λ/D (with 6.6×10-8 in selected regions). In this paper, we present these results, describe our methods, present an analysis of current limiting factors, and solutions to overcome them.
机译:太阳系外行星,尤其是类地行星的直接成像是一个令人兴奋但困难的问题,需要望远镜成像系统在100 mas或更小的距离下具有1010对比度的成像。此外,当前的NASA科学预算可能只允许使用小型1-2 m太空望远镜来完成这项任务,这对成像仪器的性能提出了强烈要求。幸运的是,一种称为相致振幅变迹(PIAA)日冕仪的高效日冕仪已经日趋成熟,并且可以为此类小型望远镜实现类地球行星成像。在本文中,我们报告了NASA Ames的一个新测试台的最新结果,该测试台侧重于测试PIAA日冕仪。该实验室设施建于2008年,旨在灵活,在高度稳定的空气环境中运行,并补充NASA JPL的现有工作。对于我们的波前控制,我们将重点放在使用小型微机电系统可变形反射镜(MEMS DM),这有望减小光束和整个仪器的尺寸,这对于小型望远镜而言非常重要。在撰写本文时,我们正在使用折射PIAA系统,并在2.0至4.8λ/ D的暗区(选定区域为6.6×10-8)中实现了约1.2×10-7的对比度。在本文中,我们介绍了这些结果,描述了我们的方法,介绍了当前限制因素的分析以及克服这些问题的解决方案。

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