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High Contrast Imaging with the JWST NIRCAM Coronagraph

机译:与JWST Nircam Coronagraph的高对比度成像

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Relative to ground-based telescopes, the James Webb Space Telescope (JWST) will have a substantial sensitivity advantage in the 2.2-5μm wavelength range where brown dwarfs and hot Jupiters are thought to have significant brightness enhancements. To facilitate high contrast imaging within this band, the Near-Infrared Camera (NIRCAM) will employ a Lyot coronagraph with an array of band-limited image-plane occulting spots. In this paper, we provide the science motivation for high contrast imaging with NIRCAM, comparing its expected performance to that of the Keck, Gemini and 30 m (TMT) telescopes equipped with Adaptive Optics systems of different capabilities. We then describe our design for the NIRCAM coronagraph that enables imaging over the entire sensitivity range of the instrument while providing significant operational flexibility. We describe the various design tradeoffs that were made in consideration of alignment and aberration sensitivities and present contrast performance in the presence of JWST's expected optical aberrations. Finally we show an example of a two-color image subtraction that can provide 10~(-5) companion sensitivity at sub-arcsecond separations.
机译:相对于地面望远镜,James Webb太空望远镜(JWST)将在2.2-5μm波长范围内具有大量敏感的优势,其中棕色矮人和热刺刀被认为具有显着亮度增强。为了便于在该频段内的高对比度成像,近红外相机(NIRCAM)将采用带有带有带状图像平面暗集斑点的塞托特·苏伦。在本文中,我们提供了与尼卡姆高对比度成像的科学动机,将其预期的性能与配备不同能力的自适应光学系统的凯克,双子座和30米(TMT)望远镜进行了比较。然后,我们描述了我们对Nircam Coronagraph的设计,使得能够在仪器的整个敏感范围内成像,同时提供显着的操作灵活性。我们描述了考虑到对准和像差敏感性的各种设计权衡,并在JWST的预期光学像差存在下显示对比性能。最后,我们展示了双色图像减法的示例,其可以在子弧分离的分离下提供10〜(5)个伴随性。

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