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Diffraction Limited Imaging in the Visible from Large Ground-Based Telescopes: New Methods for Future Instruments and Telescopes

机译:大型地面望远镜可见光中的衍射受限成像:未来仪器和望远镜的新方法

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Faint object diffraction limited imaging in the visible from the ground has recently been demonstrated on a 5 m telescope with more than twice the resolution of Hubble for the first time. It has shown the way towards diffraction limited imaging in the visible with the next generation of large telescopes. This paper describes the results of experiments to show how this is achieved and what is needed to work well with faint natural guide stars. The importance of a large isoplanatic patch size is also emphasised. In particular, we will describe a new approach to the design of high efficiency, low order adaptive curvature sensors which use photon counting CCD detectors. Such systems used on larger telescopes together with image segmentation and resynthesis techniques using closure phase techniques are shown to have an important place in achieving these goals. The optimum combination of these different techniques will be explained for a variety of different applications.
机译:最近在5米的望远镜上证明了从地面可见的微弱物体衍射有限的成像,这是第一次超过哈勃分辨率的两倍以上的望远镜。它示出了在下一代大望远镜中可见的衍射有限成像的方式。本文介绍了实验结果,以展示如何实现这一目标以及使用微弱的自然导向恒星工作的需要良好。还强调了大型等渗贴片尺寸的重要性。特别是,我们将描述一种设计高效率,低阶自适应曲率传感器的新方法,该方法使用光子计数CCD检测器。在较大望远镜上使用的这种系统与使用闭合相技术的图像分割和重新合成技术一起被示出在实现这些目标方面具有重要的位置。这些不同技术的最佳组合将用于各种不同的应用。

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