Please use this identifier to cite or link to this item: http://hdl.handle.net/2248/8220
Title: A Sensitive Search for Supernova Emission Associated with the Extremely Energetic and Nearby GRB 221009A
Authors: Srinivasaragavan, Gokul P
O'Connor, Brendan
Bradley Cenko, S
Dittmann, Alexander J
Yang, Sheng
Sollerman, Jesper
Anupama, G. C
Barway, Sudhanshu
Bhalerao, Varun
Kumar, Harsh
Swain, Vishwajeet
Hammerstein, Erica
Holt, Isiah
Anand, Shreya
Andreoni, Igor
Coughlin, Michael W
Dichiara, Simone
Gal-Yam, Avishay
Coleman Miller, M
Soon, Jaime
Soria, Roberto
Durbak, Joseph
Gillanders, James H
Laha, Sibasish
Moore, Anna M
Ragosta, Fabio
Troja, Eleonora
Keywords: Core-collapse supernovae
Gamma-ray bursts
Relativistic jets
Issue Date: 1-Jun-2023
Publisher: American Astronomical Society
Citation: The Astrophysical Journal Letters, Vol. 949, No. 2, L39
Abstract: We report observations of the optical counterpart of the long gamma-ray burst GRB 221009A. Due to the extreme rarity of being both nearby (z = 0.151) and highly energetic (Eγ,iso 1054 erg), GRB 221009A offers a unique opportunity to probe the connection between massive star core collapse and relativistic jet formation across a very broad range of γ-ray properties. Adopting a phenomenological power-law model for the afterglow and host galaxy estimates from highresolution Hubble Space Telescope imaging, we use Bayesian model comparison techniques to determine the likelihood of an associated supernova (SN) contributing excess flux to the optical light curve. Though not conclusive, we find moderate evidence (KBayes = 101.2) for the presence of an additional component arising from an associated SN, SN 2022xiw, and find that it must be substantially fainter (<67% as bright at the 99% confidence interval) than SN 1998bw. Given the large and uncertain line-of-sight extinction, we attempt to constrain the SN parameters (MNi, Mej, and EKE) under several different assumptions with respect to the host galaxy’s extinction. We find properties that are broadly consistent with previous GRB-associated SNe: MNi = 0.05–0.25 Me, Mej = 3.5–11.1 Me, and EKE = (1.6–5.2) × 1052 erg. We note that these properties are weakly constrained due to the faintness of the SN with respect to the afterglow and host emission, but we do find a robust upper limit on MNi of MNi < 0.36 Me. Given the tremendous range in isotropic gamma-ray energy release exhibited by GRBs (seven orders of magnitude), the SN emission appears to be decoupled from the central engine in these systems.
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/2248/8220
ISSN: 2041-8213
Appears in Collections:IIAP Publications

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