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Analytic diffraction analysis of a 32-m telescope with hexagonal segments for high-contrast imaging

机译:具有六角形段的3​​2米望远镜用于高对比度成像的解析衍射分析

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摘要

Large segmented telescopes cannot be modeled accurately with fast-Fourier-transform techniques since small features such as gaps between the segments will be inadequately sampled. An analytic Fourier-transform method can be used to model any pupil configuration with straight edges, including tolerance analysis and some types of apodization. We analytically investigated a 32-m segmented primary with 18 hexagonal segments for high-contrast imaging. There are significant regions in the image in which extrasolar planets could be detected. However, the hexagonal profile of the pupil was not as useful as expected. The gaps between the segments, the secondary obscuration, and the secondary spiders must be as small as possible and their edges must be apodized. Apodizing the edges of the individual segments reduced the useful regions in the image since the gaps appeared to be wider.
机译:大片段望远镜无法使用快速傅里叶变换技术精确建模,因为小特征(例如片段之间的间隙)将无法充分采样。可以使用解析傅里叶变换方法对具有直边的任何瞳孔配置进行建模,包括公差分析和某些类型的切趾处理。我们分析性地调查了32米分段的主图像和18个六边形图像,以进行高对比度成像。图像中存在可检测到太阳系外行星的重要区域。但是,瞳孔的六角形轮廓没有预期的有用。段之间的间隙,二级遮盖物和二级蜘蛛网之间的间隙必须尽可能小,并且其边缘必须切趾。切开各个段的边缘会减少图像中的有用区域,因为间隙似乎更宽。

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