论文标题
使用无监督的机器学习发现具有ASKAP的奇特无线电形态
Discovery of Peculiar Radio Morphologies with ASKAP using Unsupervised Machine Learning
论文作者
论文摘要
我们提供了使用无监督的机器学习方法检测到的一组特殊的无线电来源。我们使用澳大利亚平方公里阵列探路者(ASKAP)望远镜的数据来训练自组织地图(SOM)。来自三个ASKAP调查的无线电图,宇宙试验调查的进化图(EMU-PS),中性气体起源试验调查(DINGO)的深入研究(DINGO)和对GAMA-09 + X射线ASKAP的调查(SWAG-X)用于搜索最稀有或不知名的无线电形态。我们使用SOM算法的扩展,该算法实现了天文来源的旋转并翻转不变性。使用EMU-PS中所有“复杂”无线电源的图像对SOM进行了训练,我们将其定义为所有源为“多组分”的源。然后,训练有素的SOM用于估计所有调查中复杂来源的相似性评分。我们根据相似性度量选择了0.5%的源,这些来源是最复杂的,并在视觉上检查它们以找到最稀有的无线电形态。其中,我们发现了两个新的奇数无线电圈(ORC)候选者和其他五个奇特的形态。我们讨论了选定特殊来源的多波长特性和光学/红外对应物。此外,我们介绍了传统无线电形态的示例,包括:从星系簇中弥漫发射,以及解决,弯曲尾部以及FR-I和FR-II和FR-II型射线星系。我们讨论了过度密度的环境,这可能是兽人候选者循环形状背后的原因。
We present a set of peculiar radio sources detected using an unsupervised machine learning method. We use data from the Australian Square Kilometre Array Pathfinder (ASKAP) telescope to train a self-organizing map (SOM). The radio maps from three ASKAP surveys, Evolutionary Map of Universe pilot survey (EMU-PS), Deep Investigation of Neutral Gas Origins pilot survey (DINGO) and Survey With ASKAP of GAMA-09 + X-ray (SWAG-X), are used to search for the rarest or unknown radio morphologies. We use an extension of the SOM algorithm that implements rotation and flipping invariance on astronomical sources. The SOM is trained using the images of all "complex" radio sources in the EMU-PS which we define as all sources catalogued as "multi-component". The trained SOM is then used to estimate a similarity score for complex sources in all surveys. We select 0.5\% of the sources that are most complex according to the similarity metric, and visually examine them to find the rarest radio morphologies. Among these, we find two new odd radio circle (ORC) candidates and five other peculiar morphologies. We discuss multiwavelength properties and the optical/infrared counterparts of selected peculiar sources. In addition, we present examples of conventional radio morphologies including: diffuse emission from galaxy clusters, and resolved, bent-tailed, and FR-I and FR-II type radio galaxies. We discuss the overdense environment that may be the reason behind the circular shape of ORC candidates.