English

A binary merger product as the direct progenitor of a Type II-P supernova

High Energy Astrophysical Phenomena 2026-01-15 v2

Abstract

Type II-P supernovae (SNe II-P) are the most common class of core-collapse SNe in the local Universe and play critical roles in many aspects of astrophysics. Since decades ago theorists have predicted that SNe II-P may originate not only from single stars but also from interacting binaries. While ~20 SNII-P progenitors have been directly detected on pre-explosion images, observational evidence still remains scarce for this speculated binary progenitor channel. In this work, we report the discovery of a red supergiant progenitor for the Type II-P SN 2018gj. While the progenitor resembles those of other SNe II-P in terms of effective temperature and luminosity, it is located in a very old environment and SN 2018gj has an abnormally short plateau in the light curve. With state-of-the-art binary evolution simulations, we find these characteristics can only be explained if the progenitor of SN 2018gj is the merger product of a close binary system, which developed a different interior structure and evolved over a longer timescale compared with single-star evolution. This work provides the first compelling evidence for the long-sought binary progenitor channel toward SNe II-P, and our methodology serves as an innovative and pragmatic tool to motivate further investigations into this previously hidden population of SNe II-P from binaries.

Keywords

Cite

@article{arxiv.2601.06577,
  title  = {A binary merger product as the direct progenitor of a Type II-P supernova},
  author = {Zexi Niu and Ning-Chen Sun and Emmanouil Zapartas and Dimitris Souropanis and Yingzhen Cui and Justyn R. Maund and JeffJ. Andrews and Max M. Briel and Morgan Fraser and Seth Gossage and Matthias U. Kruckow and Camille Liotine and Zhengwei Liu and Philipp Podsiadlowski and Philipp M. Srivastava and Elizabeth Teng and Xiaofeng Wang and Yi Yang and Jifeng Liu},
  journal= {arXiv preprint arXiv:2601.06577},
  year   = {2026}
}

Comments

Accepted for publication in Science Bulletin. 11 pages and 3 pages Supplementary materials