TY - JOUR
T1 - A 14-yr-old Mystery
T2 - The Peculiar Case of the Engine-driven SN 2012ap
AU - Sfaradi, Itai
AU - Margutti, Raffaella
AU - Chornock, Ryan
AU - A. J., Nayana
AU - Wiston, Eli
AU - De Colle, Fabio
AU - Clarke, Tracy E.
AU - Peters, Wendy M.
AU - Beniamini, Paz
AU - Lu, Wenbin
AU - Barniol Duran, Rodolfo
AU - Bietenholz, Michael
AU - Christy, Collin T.
AU - Coppejans, Deanne L.
AU - Drout, Maria R.
AU - Ibrahimzade, Dina
AU - Michałowski, Michał J.
AU - Milisavljevic, Dan
AU - Omand, Conor M.B.
AU - Wang, Yihan
AU - Alexander, Kate D.
AU - Badenes, Carles
AU - Bright, Joe
AU - Granot, Jonathan
AU - Hammerstein, Erica
AU - Jacobson-Galán, W. V.
AU - LeBaron, Natalie
AU - Murase, Kohta
AU - Rameshan, Gitika
AU - Sears, Huei
AU - Stroh, Michael
AU - Terreran, Giacomo
N1 - Publisher Copyright:
© 2026. The Author(s). Published by the American Astronomical Society. Original content from this work may be used under the terms of the https://creativecommons.org/licenses/by/4.0/. Any further distribution of this work must maintain attribution to the author(s) and the title of the work, journal citation and DOI.
PY - 2026/7/1
Y1 - 2026/7/1
N2 - 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.
AB - 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.
KW - Circumstellar matter (241)
KW - Core-collapse supernovae (304)
KW - Radio astronomy (1338)
KW - Relativistic jets (1390)
KW - Time domain astronomy (2109)
UR - https://www.scopus.com/pages/publications/105042590498
U2 - 10.3847/2041-8213/ae796d
DO - 10.3847/2041-8213/ae796d
M3 - ???researchoutput.researchoutputtypes.contributiontojournal.article???
AN - SCOPUS:105042590498
SN - 2041-8205
VL - 1005
JO - Astrophysical Journal Letters
JF - Astrophysical Journal Letters
IS - 1
M1 - L19
ER -