论文标题

通过使用Zernike Wavefront传感器进行外部成像的Lyot Coronagraph估算低阶畸变

Estimating low-order aberrations through a Lyot coronagraph with a Zernike wavefront sensor for exoplanet imaging

论文作者

Pourcelot, Raphaël, N'Diaye, Mamadou, Brady, Greg, Carbillet, Marcel, Dohlen, Kjetil, Fowler, Julia, Laginja, Iva, Maclay, Matthew, Noss, James, Perrin, Marshall, Petrone, Pete, Por, Emiel, Sauvage, Jean-François, Soummer, Rémi, Vigan, Arthur, Will, Scott

论文摘要

成像外观是一项令人兴奋但具有挑战性的任务,因为这些行星与他们的宿主恒星之间的对比度比100 MAS狭窄。大型分段的孔径望远镜使观察大量行星所需的灵敏度。结合带有波前控制的冠状动脉,它们提出了一种有希望的途径,可以在观察到的恒星的图像中产生高对比度区域。 另一个关键方面是,望远镜指向,聚焦和共同强调望远镜主镜段的稳定性需要长时间暴露于岩石行星几个小时到几天。这些波前误差应稳定至几十个皮术RMS,需要在观测序列期间对这些误差进行永久性的主动校正。为了校准这些指向误差和其他关键的低阶畸变,我们提出了一个基于Zernike相抵触方法的波前传感路径,以分析望远镜焦点处的冠状动脉滤波器过滤的星光。在这项工作中,我们介绍了星光光束中传入的低阶畸变的分析检索,该梁被闲置的学生lyot coronagraph滤除,这是星光抑制的领先冠冕类型之一。我们以数值为主动控制这些畸变的方法,并在高对比度成像仪上进行了用于复杂孔径望远镜(HICAT)测试台的第一个实验结果的应用,STSCI测试床位,用于Earth-Twin观察结果,并具有未来的大空间观察者,例如Luvoir和Habex,例如NASA Flagship Sigsss概念。

Imaging exo-Earths is an exciting but challenging task because of the 10^-10 contrast ratio between these planets and their host star at separations narrower than 100 mas. Large segmented aperture space telescopes enable the sensitivity needed to observe a large number of planets. Combined with coronagraphs with wavefront control, they present a promising avenue to generate a high-contrast region in the image of an observed star. Another key aspect is the required stability in telescope pointing, focusing, and co-phasing of the segments of the telescope primary mirror for long-exposure observations of rocky planets for several hours to a few days. These wavefront errors should be stable down to a few tens of picometers RMS, requiring a permanent active correction of these errors during the observing sequence. To calibrate these pointing errors and other critical low-order aberrations, we propose a wavefront sensing path based on Zernike phase-contrast methods to analyze the starlight that is filtered out by the coronagraph at the telescope focus. In this work we present the analytical retrieval of the incoming low order aberrations in the starlight beam that is filtered out by an Apodized Pupil Lyot Coronagraph, one of the leading coronagraph types for starlight suppression. We implement this approach numerically for the active control of these aberrations and present an application with our first experimental results on the High-contrast imager for Complex Aperture Telescopes (HiCAT) testbed, the STScI testbed for Earth-twin observations with future large space observatories, such as LUVOIR and HabEx, two NASA flagship mission concepts.

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