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Stellar flare detection in XMM-Newton with gradient-boosted trees

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Context . The EXTraS project, based on data collected with the XMM-Newton observatory, provides us with a vast amount of light curves for X-ray sources. For each light curve, EXTraS also provides us with a set of features. From the EXTraS database, we extracted a tabular dataset of 31, 832 variable sources based on 108 features. Of these, 13, 851 sources were manually labeled as stellar flares or non-flares based on direct visual inspection. Aims . We employed a supervised learning approach to produce a catalog of stellar flares based on our dataset, subsequently releasing it to the community. We leveraged explainable AI tools and interpretable features to better understand our classifier. Methods . We trained a gradient-boosting classifier on 80% of the data, which had labels available. We computed the permutation feature importance scores, visualized the feature space using UMAP, and analyzed some false positive and false negative data points with the help of Shapley additive explanations. Specifically, we used it to measure the importance of each feature in determining the classifier’s prediction for each instance. Results . On the test set made up of the remainder 20% of our labeled data, we obtained an accuracy of 97.1%, with a precision of 82.4% and a recall of 73.3%. Our classifier outperforms a simple criterion based on fitting the light curve with a flare template and significantly surpasses a gradient-boosted classifier trained only on model-independent features. False positives appear to be related to flaring light curves that are not associated with a stellar counterpart, while false negatives often correspond to multiple flares or otherwise peculiar or noisy curves. Conclusions . We applied our trained classifier to currently unlabeled sources, leading to the compilation and release of the largest catalog of X-ray stellar flares to date. We estimated that integrating our classifier into the astronomers’ workflow will reduce the time spent on visually inspecting light curves by approximately half, compared to an approach based on flare template fitting. This holds implications for the classification of sources whose variability is less well established within EXTraS as well as for other catalogs and, possibly, forthcoming missions.

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DOI retrouvé dans Crossref DOI retrouvé, mais le titre doit être comparé manuellement.

Titre Crossref
Stellar flare detection in <i>XMM-Newton</i> with gradient-boosted trees
Date Crossref
01/04/2026
Éditeur
EDP Sciences
Type
journal-article

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Institutions déclarées

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Sujets associés

Inertial Sensor and NavigationStellar, planetary, and galactic studiesAdaptive optics and wavefront sensing

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