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Direct Detection of Planets Orbiting Large Angular Diameter Stars: Sensitivity of an Internally Occulting Space-based Coronagraph

机译:直接检测绕大角直径恒星运行的行星:内部潜伏天基日冕仪的灵敏度

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摘要

High-contrast imaging observations of large angular diameter stars enable complementary science questions to be addressed compared to the baseline goals of proposed missions like the Terrestrial Planet Finder-Coronagraph, New World's Observer, and others. Such targets, however, present a practical problem in that finite stellar size results in unwanted starlight reaching the detector, which degrades contrast. In this paper, we quantify the sensitivity, in terms of contrast, of an internally occulting, space-based coronagraph as a function of stellar angular diameter, from unresolved dwarfs to the largest evolved stars. Our calculations show that an assortment of band-limited image masks can accommodate a diverse set of observations to help maximize mission scientific return. We discuss two applications based on the results: the spectro-photometric study of planets already discovered with the radial velocity technique to orbit evolved stars, which we elucidate with the example of Pollux b, and the direct detection of planets orbiting our closest neighbor, α Centauri, whose primary component is on the main sequence but subtends an appreciable angle on the sky. It is recommended that similar trade studies be performed with other promising internal, external, and hybrid occulter designs for comparison, as there is relevance to a host of interesting topics in planetary science and related fields.
机译:与拟议任务的基线目标(如“地球行星寻星仪-日冕仪”,“新世界观察家”等)的基准目标相比,对大直径直径恒星的高对比度成像观测可以解决互补的科学问题。但是,这样的目标存在一个实际问题,即有限的恒星大小会导致有害的星光到达检测器,从而降低对比度。在本文中,我们以对比度为单位,量化了内部隐匿的,基于空间的日冕仪作为从未解析的小矮星到最大的演化恒星的恒星角直径的函数。我们的计算表明,各种频带受限的图像蒙版可以容纳各种观察结果,以帮助最大化任务科学回报。我们基于结果讨论了两种应用:利用径向速度技术对已演化的恒星进行轨道化已发现的行星的分光光度研究(以Pollux b为例),以及直接探测绕过我们最近的邻居α的行星半人马座,其主要成分在主要序列上,但在天空上呈可观的角度。建议与其他有前途的内部,外部和混合掩星设计进行类似的贸易研究,以进行比较,因为这与行星科学和相关领域中的许多有趣主题相关。

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