arXiv:2412.01150astro-ph.HEastro-ph.IM2024-12中稿 · Monthly Notices of…被引 9

用新方法从天文数据中发现首个钱德拉望远镜记录的快速X射线暂现源。

Representation Learning for Time-Domain High-Energy Astrophysics: Discovery of Extragalactic Fast X-ray Transient XRT 200515

  • 构建时间-能量图和时间-能量-时间差立方体,融合时序与能谱信息
  • 通过无监督学习识别出3559个暂现候选体,发现独特暂现源XRT 200515
  • 适用于多台望远镜数据,助力发现罕见天体事件,适合天文数据挖掘者

我们提出一种新型表示学习方法,用于高能数据集中的异常检测、无监督分类和相似性搜索。该方法在钱德拉档案数据中发现了首个同类快速X射线暂现源(FXT)XRT 200515,属于“大海捞针”式发现。近期在X射线天文学中陆续出现如双中子星并合引发的FXT及河外行星掩食候选事件,凸显系统性搜索历史数据的必要性。我们引入新数据表示形式E-t图和E-t-dt立方体,有效编码时间和能谱信息,支持对变长事件序列的机器学习处理。采用主成分分析或稀疏自编码器提取低维特征,再以DBSCAN聚类,通过聚类中心或邻近搜索识别新暂现源,共生成3559个候选体(含3447个耀斑和112个暗度事件)。XRT 200515表现出独特时序与能谱变化:初始10秒内出现强烈硬X射线爆发,随后约800秒呈现振荡尾部且能谱软化。其可能为首次在低X射线能段观测到的巨磁星爆发,或首次发现的来自大麦哲伦云中未知低质量X射线双星的Ⅰ型X射线暴。该方法可扩展至XMM-Newton、Swift-XRT、eROSITA、爱因斯坦探针等观测设备,以及未来任务如AXIS。

原文摘要 · Abstract (English)

We present a novel representation learning method for downstream tasks like anomaly detection, unsupervised classification, and similarity searches in high-energy data sets. This enabled the discovery of a new extragalactic fast X-ray transient (FXT) in Chandra archival data, XRT 200515, a needle-in-the-haystack event and the first Chandra FXT of its kind. Recent serendipitous discoveries in X-ray astronomy, including FXTs from binary neutron star mergers and an extragalactic planetary transit candidate, highlight the need for systematic transient searches in X-ray archives. We introduce new event file representations, E-t maps and E-t-dt cubes, that effectively encode both temporal and spectral information, enabling the seamless application of machine learning to variable-length event file time series. Our unsupervised learning approach employs PCA or sparse autoencoders to extract low-dimensional, informative features from these data representations, followed by clustering in the embedding space with DBSCAN. New transients are identified within transient-dominant clusters or through nearest-neighbour searches around known transients, producing a catalogue of 3559 candidates (3447 flares and 112 dips). XRT 200515 exhibits unique temporal and spectral variability, including an intense, hard <10s initial burst, followed by spectral softening in an ~800s oscillating tail. We interpret XRT 200515 as either the first giant magnetar flare observed at low X-ray energies or the first extragalactic Type I X-ray burst from a faint, previously unknown low-mass X-ray binary in the LMC. Our method extends to data sets from other observatories such as XMM-Newton, Swift-XRT, eROSITA, Einstein Probe, and upcoming missions like AXIS.

天体物理表示学习暂现源机器学习

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