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The Gemini Planet Imager Coronagraph Testbed

机译:双子座行星成像仪日冕仪测试台

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摘要

The Gemini Planet Imager (GPI) is a new facility instrument to be commissioned at the 8-m Gemini South telescope in early 2011. It combines of several subsystems including a 1500 subaperture Extreme Adaptive Optics system, an Apodized Pupil Lyot Coronagraph, a near-infrared high-accuracy interferometric wavefront sensor, and an Integral Field Unit Spectrograph, which serves as the science instrument. GPI's main scientific goal is to detect and characterize relatively young (<2GYr), self luminous planets with planet-star brightness ratios of < 10~-7 in the near infrared. Here we present an overview of the coronagraph subsystem, which includes a pupil apodization, a hard-edged focal plane mask and a Lyot stop. We discuss designs optimization, masks fabrication and testing. We describe a near infrared testbed, which achieved broadband contrast (H-band) below 10~-6 at separations > 5λ/D, without active wavefront control (no deformable mirror). We use Fresnel propagation modeling to analyze the testbed results.
机译:双子座行星成像仪(GPI)是将于2011年初在8米双子座南望远镜上调试的一种新型设施仪器。它结合了多个子系统,包括1500子孔径的超自适应光学系统,切趾瞳距Lyot日冕仪,红外高精度干涉测量波前传感器,以及作为科学仪器的积分场单位光谱仪。 GPI的主要科学目标是检测和表征相对年轻(<2GYr)的自发光行星,其近红外中的恒星亮度比小于10〜-7。在这里,我们介绍了日冕仪子系统的概述,其中包括瞳孔变迹,硬边焦平面掩模和Lyot光阑。我们讨论设计优化,掩膜制造和测试。我们描述了一个近红外测试台,在没有主动波前控制(没有可变形镜)的情况下,当间隔>5λ/ D时,宽带对比度(H波段)低于10〜-6。我们使用菲涅耳传播模型来分析测试台结果。

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