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Nijboer-Zernike phase retrieval for high contrast imaging: Principle, on-sky demonstration with NACO, and perspectives in vector vortex coronagraphy

机译:高对比度成像的Nijboer-Zernike相位检索:原理,使用NACO进行的空中演示以及矢量涡旋冠冕仪中的透视图

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摘要

We introduce a novel phase retrieval method for astronomical applications based on the Nijboer-Zernike (NZ) theory of diffraction. We present a generalized NZ phase retrieval process that is not limited to small and symmetric aberrations and can therefore be directly applied to astronomical imaging instruments. We describe a practical demonstration of this novel method that was recently performed using data taken on-sky with NAOS-CONICA, the adaptive optics system of the Very Large Telescope. This demonstration presents the first online on-sky phase retrieval results ever obtained, and allows us to plan subsequent refinements on a well-tested basis. Among the potential refinements, and within the framework of high-contrast imaging of extra-solar planetary systems (which requires exquisite wavefront quality), we introduce an extension of the generalized NZ to the high-dynamic range case, and particularly to its use with the vector vortex coronagraph. This induces conjugated phase ramps applied to the orthogonal circular polarizations, which can be used to instantaneously retrieve the complex amplitude of the field, yielding a real-time calibration of the wavefront that does not need any other modulation such as focus or other deformable mirror probe patterns. Paper II (Riaud et al. 2012, A&A, 545, A151) presents the mathematical and practical details of the new method.
机译:我们介绍了一种基于Nijboer-Zernike(NZ)衍射理论的天文学应用的新型相位检索方法。我们提出了一种广义的NZ相检索方法,该方法不限于小而对称的像差,因此可以直接应用于天文成像仪器。我们描述了这种新颖方法的实际演示,该演示方法是使用NAOS-CONICA(超大型望远镜的自适应光学系统)在空中采集的数据进行的。该演示展示了有史以来第一个在线的天空相位检索结果,并使我们能够在经过充分测试的基础上计划后续的改进。在可能的改进中,并且在太阳系外行星系统的高对比度成像(需要出色的波前质量)的框架内,我们将广义NZ扩展到高动态范围情况下,尤其是将其用于矢量涡旋日冕仪。这会产生施加到正交圆极化的共轭相位斜坡,可用于瞬时获取场的复振幅,从而产生不需要任何其他调制(例如聚焦或其他可变形镜面探头)的波前实时校准。模式。论文二(Riaud等人,2012,A&A,545,A151)介绍了该新方法的数学和实践细节。

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