A Shock Flash Breaking Out of a Dusty Red Supergiant
Abstract
Shock breakout emission is light that arises when a shockwave, generated by core-collapse explosion of a massive star, passes through its outer envelope. Hitherto, the earliest detection of such a signal was at several hours after the explosion, though a few others had been reported. The temporal evolution of early light curves should reveal insights into the shock propagation, including explosion asymmetry and environment in the vicinity, but this has been hampered by the lack of multiwavelength observations. Here we report the instant multiband observations of a type II supernova (SN 2023ixf) in the galaxy M101 (at a distance of 6.85+/-0.15 Mpc), beginning at about 1.4 hours after the explosion. The exploding star was a red supergiant with a radius of about 440 solar radii. The light curves evolved rapidly, on timescales of 1-2 hours, and appeared unusually fainter and redder than predicted by models within the first few hours, which we attribute to an optically thick dust shell before it was disrupted by the shockwave. We infer that the breakout and perhaps the distribution of the surrounding dust were not spherically symmetric.
Keywords
Cite
@article{arxiv.2311.14409,
title = {A Shock Flash Breaking Out of a Dusty Red Supergiant},
author = {Gaici Li and Maokai Hu and Wenxiong Li and Yi Yang and Xiaofeng Wang and Shengyu Yan and Lei Hu and Jujia Zhang and Yiming Mao and Henrik Riise and Xing Gao and Tianrui Sun and Jialian Liu and Dingrong Xiong and Lifan Wang and Jun Mo and Abdusamatjan Iskandar and Gaobo Xi and Danfeng Xiang and Lingzhi Wang and Guoyou Sun and Keming Zhang and Jian Chen and Weili Lin and Fangzhou Guo and Qichun Liu and Guangyao Cai and Wenjie Zhou and Jingyuan Zhao and Jin Chen and Xin Zheng and Keying Li and Mi Zhang and Shijun Xu and Xiaodong Lyu and A. J. Castro-Tirado and Vasilii Chufarin and Nikolay Potapov and Ivan Ionov and Stanislav Korotkiy and Sergey Nazarov and Kirill Sokolovsky and Norman Hamann and Eliot Herman},
journal= {arXiv preprint arXiv:2311.14409},
year = {2024}
}
Comments
32 pages, 9 figures, and 3 tables. Online publication in Nature (Dec. 13th 2023)