Fading into darkness: A weak mass ejection and low-efficiency fallback accompanying black hole formation in M31-2014-DS1
Abstract
Stellar-mass black holes (BHs) can form from the near-complete collapse of massive stars, causing them to abruptly disappear. The star M31-2014-DS1 in the Andromeda galaxy was reported to exhibit such a disappearance between 2014 and 2022, with properties consistent with the failed explosion of a M yellow supergiant leading to the formation of a M BH. We present mid-infrared (MIR) observations of the remnant obtained with the James Webb Space Telescope (JWST) and X-ray observations from the Chandra X-ray Observatory in 2024. The JWST MIRI/NIRSpec data reveal an extremely red source, showing strong blueshifted absorption from molecular gas (CO, CO, HO, SO) and deep silicate dust features. Modeling the dust continuum confirms continued bolometric fading of the central source to (% of the progenitor luminosity), surrounded by a dust shell spanning au. Modeling of the molecular gas indicates M of gas expanding at km s near the inner edge of the dust shell. No X-ray source is detected down to a luminosity limit of erg s. We show that the panchromatic observations are explained by (i) a low-energy ( erg) ejection of the outer H-rich progenitor envelope and (ii) a fading central BH powered by inefficient (% in mass) accretion of loosely bound fallback material. The analysis robustly establishes the bolometric fading of M31-2014-DS1 and provides the first cohesive insights into BH formation via low-energy explosions and long-term fallback.
Keywords
Cite
@article{arxiv.2601.05774,
title = {Fading into darkness: A weak mass ejection and low-efficiency fallback accompanying black hole formation in M31-2014-DS1},
author = {Kishalay De and Morgan MacLeod and Jacob E. Jencson and Ryan M. Lau and Andrea Antoni and María José Colmenares and Jane Huang and Megan Masterson and Viraj R. Karambelkar and Mansi M. Kasliwal and Abraham Loeb and Christos Panagiotou and Eliot Quataert},
journal= {arXiv preprint arXiv:2601.05774},
year = {2026}
}
Comments
Accepted for publication in ApJ Letters