A transient radio source consistent with a merger-triggered core collapse supernova

A core collapse supernova occurs when exothermic fusion ceases in the core of a massive star, which is typically caused by exhaustion of nuclear fuel. Theory predicts that fusion could be interrupted earlier by merging of the star with a compact binary companion. We report a luminous radio transient...

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Veröffentlicht in:Science (American Association for the Advancement of Science) 2021-09, Vol.373 (6559), p.1125-1129
Hauptverfasser: Dong, D Z, Hallinan, G, Nakar, E, Ho, A Y Q, Hughes, A K, Hotokezaka, K, Myers, S T, De, K, Mooley, K P, Ravi, V, Horesh, A, Kasliwal, M M, Kulkarni, S R
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Sprache:eng
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Zusammenfassung:A core collapse supernova occurs when exothermic fusion ceases in the core of a massive star, which is typically caused by exhaustion of nuclear fuel. Theory predicts that fusion could be interrupted earlier by merging of the star with a compact binary companion. We report a luminous radio transient, VT J121001+495647, found in the Very Large Array Sky Survey. The radio emission is consistent with supernova ejecta colliding with a dense shell of material, potentially ejected by binary interaction in the centuries before explosion. We associate the supernova with an archival x-ray transient, which implies that a relativistic jet was launched during the explosion. The combination of an early relativistic jet and late-time dense interaction is consistent with expectations for a merger-driven explosion.
ISSN:0036-8075
1095-9203
DOI:10.1126/science.abg6037