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Extended faint source detection in astronomical hyperspectral images

机译:天文高光谱图像中的扩展微弱源检测

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摘要

The circum-galactic medium consists in gas orbiting around galaxies, whose faintness prevents any complete and easy detection. A powerful tool to detect such pattern can be found in using hyperspectral imaging. Nevertheless, detection in hyperspectral datacubes faces various problems, including well-fitted signal and noise descriptions to ensure further discrimination. A specificity of astronomical images resides in dealing with faint and very noisy signals. In this paper, we introduce a new constrained generalized likelihood ratio test adapted to the problem and a compound test to exploit most of the available information. We also investigate the use of both spatial information and multiple observations on a single scene, to enhance robustness. Numerical experiments on synthetic data are performed to quantify the gain of the different approaches. Finally, results on real hyperspectral astronomical data are presented, which may map for the first time observation of the circum-galactic medium around faint and distant galaxies.
机译:环绕银河的介质由围绕银河系绕行的气体组成,其微弱性阻止了任何完整而容易的探测。使用高光谱成像可以找到检测这种模式的强大工具。尽管如此,在高光谱数据立方体中进行检测仍面临各种问题,包括适合的信号和噪声描述以确保进一步的区分。天文图像的特殊性在于处理微弱且嘈杂的信号。在本文中,我们介绍了一种适用于该问题的新的约束广义似然比检验,以及一种利用大多数可用信息的复合检验。我们还研究了在单个场景中同时使用空间信息和多个观察值的情况,以增强鲁棒性。对合成数据进行了数值实验,以量化不同方法的增益。最后,提出了真实的高光谱天文数据的结果,这可能是第一次对微弱和遥远星系周围的环绕银河系介质进行观测。

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