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Improving centroiding by super-resolution reconstruction of sodium layer density in Shack-Hartmann wavefront sensors

机译:通过Shack-Hartmann波前传感器中钠层密度的超分辨率重建来改善质心

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摘要

Adaptive optics in the new generation of large telescopes, over 24 m in diameter, present new challenges. One of them is spot elongation in Shack-Hartmann wavefront sensors when using laser guide stars. The laser brightness depends on the sodium layer density profile, and this is reproduced in the format of an elongated spot. The pattern of the spot is a problem for centroiding techniques, and knowledge of the sodium layer profile is essential for adequate centroiding. In this work, we propose a super-resolution reconstruction technique that combines the information available in various low-resolution elongated spots over the sub-apertures of the sensor to obtain a high-resolution sodium layer density profile that can be used as a reference in centroiding. This is achieved with the information available in the Shack-Hartmann wavefront sensor only, dispensing with external measurements. Finally, we present simulation results of an iterative method that yields a super-resolved sodium layer density profile jointly with improved centroiding. (C) 2016 Optical Society of America
机译:直径超过24 m的新一代大型望远镜中的自适应光学器件提出了新的挑战。其中之一是使用激光制导星时,Shack-Hartmann波前传感器的光斑伸长。激光的亮度取决于钠层的密度分布,并且以细长斑点的形式复制。斑点的图案是质心技术的问题,并且钠层轮廓的知识对于充分质心至关重要。在这项工作中,我们提出了一种超分辨率重建技术,该技术将传感器子孔上方各种低分辨率细长点中的可用信息组合在一起,以获得可作为参考的高分辨率钠层密度分布图。重心。这仅通过Shack-Hartmann波前传感器中的可用信息实现,而无需进行外部测量。最后,我们给出了一种迭代方法的仿真结果,该方法产生了超分辨的钠层密度分布并改善了质心。 (C)2016美国眼镜学会

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