A Cool and Inflated Progenitor Candidate for the Type Ib Supernova 2019yvr at 2.6 Years Before Explosion
Charles D. Kilpatrick, Maria R. Drout, Katie Auchettl, Georgios, Dimitriadis, Ryan J. Foley, David O. Jones, Lindsay DeMarchi, K. Decker, French, Christa Gall, Jens Hjorth, Wynn V. Jacobson-Galan, Raffaella, Margutti, Anthony L. Piro, Enrico Ramirez-Ruiz, Armin Rest

TL;DR
This study identifies a likely progenitor for the Type Ib supernova SN 2019yvr, characterized by an inflated, cool star with a large radius, suggesting complex pre-explosion mass loss and circumstellar interaction.
Contribution
First direct identification of a SN Ib progenitor with an inflated, large-radius star, providing insights into pre-explosion stellar evolution and circumstellar environment.
Findings
Progenitor candidate is a luminous, cool star with a large radius (~320 R_sun).
SN 2019yvr shows evidence of dense circumstellar material and eruptive mass loss.
The progenitor's properties suggest a binary evolution scenario with common envelope phases.
Abstract
We present Hubble Space Telescope imaging of a pre-explosion counterpart to SN 2019yvr obtained 2.6 years before its explosion as a type Ib supernova (SN Ib). Aligning to a post-explosion Gemini-S/GSAOI image, we demonstrate that there is a single source consistent with being the SN 2019yvr progenitor system, the second SN Ib progenitor candidate after iPTF13bvn. We also analyzed pre-explosion Spitzer/IRAC imaging, but we do not detect any counterparts at the SN location. SN 2019yvr was highly reddened, and comparing its spectra and photometry to those of other, less extinguished SNe Ib we derive mag for SN 2019yvr. Correcting photometry of the pre-explosion source for dust reddening, we determine that this source is consistent with a and K star. This relatively cool…
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