Please use this identifier to cite or link to this item: http://hdl.handle.net/2248/9014
Title: A 14-yr-old mystery: The peculiar case of the engine-driven SN 2012ap
Authors: Sfaradi, Itai
Margutti, R
Chornock, R
Nayana, A. J
Wiston, Eli
De Colle, Fabio
Clarke, T. E
Peters, Wendy M
Beniamini, Paz
Lu, Wenbin
Duran, Rodolfo Barniol
Bietenholz, M
Christy, Collin T
Coppejans, D. L
Drout, Maria R
Ibrahimzade, Dina
Michałowski, M. J
Milisavljevic, D
Omand, Conor M. B
Wang, Yihan
Alexander, Kate D
Badenes, Carles
Bright, J. S
Granot, Jonathan
Hammerstein, Erica
Jacobson-Galan, W. V
LeBaron, Natalie
Murase, Kohta
Rameshan, Gitika
Sears, Huei
Stroh, Michael
Terreran, Giacomo
Keywords: Radio astronomy
Time domain astronomy
Core-collapse supernovae
Relativistic jets
Circumstellar matter
Issue Date: 1-Jul-2026
Publisher: American Astronomical Society
Citation: The Astrophysical Journal Letters, Vol. 1005, No. 1, L19
Abstract: We present late-time (δt > 3000 days) optical (Keck), X-ray (Chandra and the Nuclear Spectroscopic Telescope Array), and radio (the Very Large Area, the Atacama Large Millimeter/submillimeter Array, and the Upgraded Giant Metrewave Radio Telescope) observations of the Type Ic-BL (SN Ic-BL) SN 2012ap. Previous studies of this supernova (SN) have suggested that it stands out as a key example of a weak engine-driven explosion due to the lack of gamma-ray burst (GRB) detection and mildly relativistic ejecta. Recently, radio sky surveys revealed the rebrightening of the radio emission from this SN, highlighting the possibilities of a density enhancement at large radii or the existence of an off-axis relativistic jet. While the late-time optical spectra do not exhibit the broad emission lines seen in other interacting supernovae (SNe), our analysis of the broadband radio and X-ray emission implies that both scenarios are plausible. If a density enhancement is responsible for the radio rebrightening, it has to result from a change in the mass-loss rate and/or wind velocity, possibly due to the transition of the progenitor from a red supergiant to a Wolf─Rayet star. If the late-time radio component is a result of an off-axis relativistic jet, we find that an energetic narrow jet viewed at θobs ≥ 80° is needed. In this scenario, SN 2012ap is not a result of a weak engine-driven explosion, and instead, it is similar to other GRBs. However, radio rebrightenings of SN Ic-BL are not enough on their own to determine the existence of off-axis jets, and our planned Very Long Baseline Array observation will help reveal the true nature of this SN.
Description: Open Access Original content from this work may be used under the terms of the Creative Commons Attribution 4.0 licence. Any further distribution of this work must maintain attribution to the author(s) and the title of the work, journal citation and DOI.
URI: http://hdl.handle.net/2248/9014
ISSN: 2041-8213
Appears in Collections:IIAP Publications

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