A 12.4 day periodicity in a close binary system after a supernova
Abstract
Neutron stars and stellar-mass black holes are the remnants of massive star explosions. Most massive stars reside in close binary systems, and the interplay between the companion star and the newly formed compact object has been theoretically explored, but signatures for binarity or evidence for the formation of a compact object during a supernova explosion are still lacking. Here we report a stripped-envelope supernova, SN 2022jli, which shows 12.4-day periodic undulations during the declining light curve. Narrow H emission is detected in late-time spectra with concordant periodic velocity shifts, likely arising from hydrogen gas stripped from a companion and accreted onto the compact remnant. A new Fermi/LAT -ray source is temporally and positionally consistent with SN 2022jli. The observed properties of SN 2022jli, including periodic undulations in the optical light curve, coherent H emission shifting, and evidence for association with a -ray source, point to the explosion of a massive star in a binary system leaving behind a bound compact remnant. Mass accretion from the companion star onto the compact object powers the light curve of the supernova and generates the -ray emission.
Cite
@article{arxiv.2310.07784,
title = {A 12.4 day periodicity in a close binary system after a supernova},
author = {Ping Chen and Avishay Gal-Yam and Jesper Sollerman and Steve Schulze and Richard S. Post and Chang Liu and Eran O. Ofek and Kaustav K. Das and Christoffer Fremling and Assaf Horesh and Boaz Katz and Doron Kushnir and Mansi M. Kasliwal and Shri R. Kulkarni and Dezi Liu and Xiangkun Liu and Adam A. Miller and Kovi Rose and Eli Waxman and Sheng Yang and Yuhan Yao and Barak Zackay and Eric C. Bellm and Richard Dekany and Andrew J. Drake and Yuan Fang and Johan P. U. Fynbo and Steven L. Groom and George Helou and Ido Irani and Theophile Jegou du Laz and Xiaowei Liu and Paolo A. Mazzali and James D. Neill and Yu-Jing Qin and Reed L. Riddle and Amir Sharon and Nora L. Strotjohann and Avery Wold and Lin Yan},
journal= {arXiv preprint arXiv:2310.07784},
year = {2023}
}
Comments
Accepted for publication in Nature