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Review of high-contrast imaging systems for current and future ground-based and space-based telescopes Ⅱ. Common path wavefront sensing/control and Coherent Differential Imaging

机译:述评电流和未来地基和太空望远镜Ⅱ的高对比度成像系统Ⅱ。公共道路波前感检测/控制和相干差异成像

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The Optimal Optical Coronagraph (OOC) Workshop held at the Lorentz Center in September 2017 in Leiden, the Netherlands, gathered a diverse group of 25 researchers working on exoplanet instrumentation to stimulate the emergence and sharing of new ideas. In this second installment of a series of three papers summarizing the outcomes of the OOC workshop (see also 1,2), we present an overview of common path wavefront sensing/control and Coherent Differential Imaging techniques, highlight the latest results, and expose their relative strengths and weaknesses. We layout critical milestones for the field with the aim of enhancing future ground/space based high contrast imaging platforms. Techniques like these will help to bridge the daunting contrast gap required to image a terrestrial planet in the zone where it can retain liquid water, in reflected light around a G type star from space.
机译:2017年9月在荷兰莱顿举行的Lorentz中心的最佳光学调度(OOC)研讨会,聚集了一组多元化的25个研究人员,用于促进新想法的出现和分享。在第二部分的一系列三篇论文总结了OOC车间的结果(另见1,2),我们概述了普通路径波前感测/控制和相干差异成像技术,突出了最新的结果,并暴露了他们的相对优势和弱点。我们为该领域布局了关键的里程碑,目的是增强未来的地面/空间高对比度成像平台。这样的技术将有助于弥合在围绕空间的G型星的反射光中弥合在可以保留液体水中的区域中展示陆地行星所需的艰难曲线。

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