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On Advanced Estimation Techniques for Exoplanet Detection and Characterization Using Ground-based Coronagraphs

机译:基于地面凝血性的外延估计和表征的高级估计技术

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摘要

The direct imaging of planets around nearby stars is exceedingly difficult. Only about 14 exoplanets have been imaged to date that have masses less than 13 times that of Jupiter. The next generation of planet-finding coronagraphs, including VLT-SPHERE, the Gemini Planet Imager, Palomar P1640, and Subaru HiCIAO have predicted contrast performance of roughly a thousand times less than would be needed to detect Earth-like planets. In this paper we review the state of the art in exoplanet imaging, most notably the method of Locally Optimized Combination of Images (LOCI), and we investigate the potential of improving the detectability of faint exoplanets through the use of advanced statistical methods based on the concepts of the ideal observer and the Hotelling observer. We propose a formal comparison of techniques using a blind data challenge with an evaluation of performance using the Receiver Operating Characteristic (ROC) and Localization ROC (LROC) curves. We place particular emphasis on the understanding and modeling of realistic sources of measurement noise in ground-based AO-corrected coronagraphs. The work reported in this paper is the result of interactions between the co-authors during a week-long workshop on exoplanet imaging that was held in Squaw Valley, California, in March of 2012.
机译:对附近恒星周围的行星进行直接成像非常困难。迄今为止,只有约14个系外行星被成像,其质量小于木星质量的13倍。包括VLT-SPHERE,双子座行星成像仪,Palomar P1640和Subaru HiCIAO在内的下一代行星探测日冕仪预测,对比性能将比探测类地球行星所需的对比度低大约1000倍。在本文中,我们回顾了系外行星成像的最新技术,最著名的是图像的局部优化组合(LOCI)方法,并且我们研究了使用基于图像的先进统计方法提高微弱系外行星可检测性的潜力。理想观察者和Hotelling观察者的概念。我们建议使用盲数据挑战对技术进行正式比较,并使用接收器工作特性(ROC)和本地化ROC(LROC)曲线对性能进行评估。我们特别强调对基于地面的AO校正的日冕仪中测量噪声的现实来源的理解和建模。本文报道的工作是2012年3月在加利福尼亚州斯阔谷举行的为期一周的系外行星成像讲习班期间共同作者之间相互作用的结果。

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