Properties of the circumstellar matter around the pair-instability supernova candidate SN 2018ibb revealed by its light curve
astro-ph.HE, astro-ph.SR
Submitted: 2026-09-14
Updated: 2026-09-14
Comments: 12 pages, 3 figures, accepted by Frontiers in Astronomy and Space Sciences
License: http://creativecommons.org/licenses/by/4.0/
The gist: SN 2018ibb is one of the best pair-instability supernova (PISN) candidates identified to date.
Terminology
Abstract
SN 2018ibb is one of the best pair-instability supernova (PISN) candidates identified to date. It, however, showed unexpected blue flux excess in late-phase spectra, likely originating from the interaction between supernova (SN) ejecta and dense circumstellar matter (CSM). We develop synthetic light-curve models of PISNe interacting with dense CSM and estimate the CSM properties of SN 2018ibb by comparing the synthetic and observed light curves. We found that the bolometric luminosity evolution of SN 2018ibb from 150 d after the peak can be well reproduced by the interaction with the CSM formed by a mass-loss rate of 0.01(v CSM/1,000 km/s) Msun/yr, where v CSM is the CSM velocity. The observed luminosity break at around 300 d from the peak indicates that the CSM interaction ended at this time and the dense CSM radius was 8.5e16 cm. The CSM radius then implies that the mass loss of the progenitor was enhanced for 28/(v CSM/1,000 km/s) yr before explosion. We conclude that PISN progenitors may experience short-term mass-loss enhancement within decades before explosion, similar to what is often observed in progenitors of core-collapse SNe.
Sources
- Decadal pre-explosion activity and circumstellar interaction in a supernova
- The pair-instability origin of supernova 2023vbw
- Same explosion, many faces: numerical modeling reveals viewing angle as a driver of diversity for core-collapse SNe in binary systems
- Diversity of stripped-envelope supernova light curves from interaction with binary-driven circumstellar material
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