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Restoration methods for astronomical images at mid-infrared wavelengths

机译:中红外波长的天文图像恢复方法

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摘要

Ground-based astronomical observations at mid-infrared wavelengths (around 10-20 microns) face the problem of extracting the weak astronomical signal from the large background due to atmosphere and telescope emission. The solution is provided by a differential technique, known as chopping & nodding, which can be modeled as the application of a second-difference operator to the image detectable in the absence of background. However, since the chopped & nodded images are distorted by large negative counterparts of the sources, a method for restoring the original non-negative image is required. In our previous work we proposed a viable iterative method which provides, in some cases, restored images affected by annoying artifacts, related to the huge non-uniqueness of the restoration problem. Therefore in this paper we present an alternative method which can be used when the source morphology or the data acquisition strategy allows to reduce the degree of non-uniqueness of the solution. By means of numerical simulations, we show that the new method does not produce the artifacts of the previous one and the implications of this result are briefly discussed.
机译:中红外波长(约10-20微米)的地面天文观测面临着提取由于大气和望远镜发射的大背景中提取弱天文信号的问题。该解决方案由差分技术提供,称为斩波和点头,其可以被建模作为在不存在背景中可检测到的图像的第二差分操作者的应用。然而,由于切碎和点头的图像被源的大负对子失真扭曲,所以需要一种用于恢复原始非负图像的方法。在我们以前的工作中,我们提出了一种可行的迭代方法,在某些情况下提供了受烦人的文物影响的图像,与恢复问题的巨大非唯一性有关。因此,在本文中,我们提出了一种替代方法,当源形态或数据采集策略允许降低解决方案的非唯一性程度时,可以使用。通过数值模拟,我们表明新方法不会产生前一个的工件,并简要讨论了该结果的含义。

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