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Machine learning classification of CHIME fast radio bursts: II. Unsupervised Methods

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arxiv 2210.02471 v3 pith:KJJ5C3JU submitted 2022-10-05 astro-ph.HE

classification astro-ph.HE
keywords learningmachinefrbsnon-repeatersrepeatersburstsmethodsunsupervised
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Fast radio bursts (FRBs) are one of the most mysterious astronomical transients. Observationally, they can be classified into repeaters and apparently non-repeaters. However, due to the lack of continuous observations, some apparently repeaters may have been incorrectly recognized as non-repeaters. In a series of two papers, we intend to solve such problem with machine learning. In this second paper of the series, we focus on an array of unsupervised machine learning methods. We apply multiple unsupervised machine learning algorithms to the first CHIME/FRB catalog to learn their features and classify FRBs into different clusters without any premise about the FRBs being repeaters or non-repeaters. These clusters reveal the differences between repeaters and non-repeaters. Then, by comparing with the identities of the FRBs in the observed classes, we evaluate the performance of various algorithms and analyze the physical meaning behind the results. Finally, we recommend a list of most credible repeater candidates as targets for future observing campaigns to search for repeated bursts in combination of the results presented in Paper I using supervised machine learning methods.

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  1. First fast radio burst search campaign at the Argentine Institute of Radio Astronomy

    astro-ph.HE 2026-08 conditional novelty 6.0 of 10

    The IAR campaign found one FRB candidate with DM 243 pc cm^-3 and S/N 8.2, backed by successful recovery of archival and injected bursts.

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