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首页> 外文期刊>The Astrophysical Journal. Supplement Series >Design of mirrors and apodization functions in phase-induced amplitude apodization systems
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Design of mirrors and apodization functions in phase-induced amplitude apodization systems

机译:相位感应振幅变迹系统中的反射镜和变迹函数设计

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摘要

Phase-induced amplitude apodization (PIAA) coronagraphs are a promising technology for imaging exoplanets, with the potential to detect Earth-like planets around Sun-like stars. A PIAA system nominally consists of a pair of mirrors that reshape incident light without attenuation, coupled with one or more apodizers to mitigate diffraction effects or provide additional beam shaping to produce a desired output profile. We present a set of equations that allow apodizers to be chosen for any given pair of mirrors, or conversely mirror shapes chosen for given apodizers, to produce an arbitrary amplitude profile at the output of the system. We show how classical PIAA systems may be designed by this method and present the design of a novel four-mirror system with higher throughput than a standard two-mirror system. We also discuss the limitations due to diffraction and the design steps that may be taken to mitigate them.
机译:相变振幅变迹(PIAA)日冕仪是对系外行星进行成像的一项有前途的技术,具有探测类太阳恒星周围的类行星行星的潜力。 PIAA系统通常由一对反射镜组成,该反射镜可对入射光进行整形而不会衰减,并与一个或多个变迹器耦合以减轻衍射效应或提供其他光束整形以产生所需的输出轮廓。我们提出了一组方程,这些方程允许为任何给定的反射镜对选择切趾器,或者为给定的切趾器选择相反的镜面形状,以在系统的输出端产生任意振幅轮廓。我们展示了如何通过这种方法设计经典的PIAA系统,并提出了一种新颖的四镜系统的设计,该系统具有比标准两镜系统更高的吞吐量。我们还将讨论由于衍射引起的局限性以及可以采取的缓解这些局限性的设计步骤。

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