arXiv · 2604.05019
The neighboring stars of N6946-BH1 and the observational characteristics of failed supernovae
Abstract
Stellar collapse models predict that some stars more massive than $\sim$15$M_\odot$ may collapse directly to a black hole, sometimes with a weak optical transient, a phenomenon known as a failed supernova. Detecting such events is challenging, but searches of vanishing stars have found two promising candidates, N6946-BH1 and M31-2014-DS1. We re-analyze the JWST NIRCam and MIRI images of N6946-BH1 to characterize the remnant emission of the object and its surrounding sources. We found four near-infrared stellar neighbors within approximately 0$.\!\!^{\prime\prime}$1 that are not related to the mid-infrared emission of the candidate. The SED of N6946-BH1 is well modeled by a $\log(L/L_\odot)$=$4.727_{-0.025}^{+0.026}$ (at 95% confidence) source obscured by a silicate dust shell with a maximum grain size of $\sim$3 $\mu$m and producing negligible emission at $\lesssim$2 $\mu$m. Given proposals that failed SN candidates are actually stellar mergers, we model the progenitor and remnant emission of four Galactic and seven extragalactic stellar mergers and compare their properties with those of the failed supernova candidates. We found that the merger remnants are 10-100 times more luminous than their progenitors at these late phases while the remnants of failed supernovae are $\sim$10 times dimmer than their progenitors. Axisymmetric, disky dust distributions cannot explain the factor of $\sim$100 or more difference in the ratios of the progenitor and remnant luminosities.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
R. Forés-Toribio, C. S. Kochanek. 2026-04-06. The neighboring stars of N6946-BH1 and the observational characteristics of failed supernovae. https://doi.org/10.33232/001c.169299
Cite the original work for its findings. Save a collection to share your selection of sources.