首页> 外文期刊>Journal of the Optical Society of America, A. Optics, image science, and vision >Unambiguous phase retrieval as a cophasing sensor for phased array telescopes
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Unambiguous phase retrieval as a cophasing sensor for phased array telescopes

机译:明确的相位检索作为相控阵望远镜的同相传感器

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Cophasing a multiple-aperture optical telescope (MAOT) or optical interferometer requires the knowledge of the tips/tilts and of the differential pistons on its subapertures. In this paper we demonstrate in the case of a point source object that a single focal-plane image is sufficient for MAOT cophasing. Adopting a least-square approach allows us to derive an analytic estimator of the subaperture aberrations, provided that these are small enough (typically for closed-loop operation) and that the pupil is diluted noncentrosymmetric. We then provide the validation of this estimator by simulations as well as a performance comparison with a more conventional iterative algorithm of phase retrieval. Finally, we present the experimental validation of both estimators on a laboratory test bench; our results, especially subnanometric repeatability, demonstrate that focal-plane sensors are appropriate for the cophasing of phased array telescopes.
机译:将多孔径光学望远镜(MAOT)或光学干涉仪同相需要了解其尖端/倾斜以及子孔径上的差动活塞的知识。在本文中,我们证明了在点源对象的情况下,单个焦平面图像足以实现MAOT同相。采用最小二乘法可以让我们导出亚孔径像差的解析估计量,前提是这些孔径足够小(通常用于闭环操作)并且瞳孔是非中心对称稀释的。然后,我们通过仿真以及与更传统的相位检索迭代算法的性能比较,提供了对该估计器的验证。最后,我们在实验室测试台上介绍了两种估计量的实验验证;我们的结果,尤其是亚纳米级的可重复性,证明了焦平面传感器适用于相控阵望远镜的同相。

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