HST Deep Upper Limits Rule Out a Surviving Massive Binary Companion to the Type Ic Supernova 2012fh
Abstract
Current explanations of the mass-loss mechanism for stripped-envelope supernovae remain divided between single and binary progenitor systems. Here we obtain deep ultraviolet (UV) imaging with the Hubble Space Telescope (HST) of the Type Ic SN 2012fh to search for the presence of a surviving companion star to the progenitor. We synthesize these observations with archival HST imaging, ground-based spectroscopy, and previous analyses from the literature to provide three independent constraints on the progenitor system. We fit the color-magnitude diagram of the surrounding population to constrain the most likely age of the system to be Myr. Analysis of spectra of SN 2012fh provide an estimate of the He core mass of the progenitor star, M. We analyze deep HST images at the precise location after the SN faded to constrain the luminosity of any remaining main-sequence binary companion to be . Combining observational constraints with current binary population synthesis models excludes the presence of a faint stellar companion to SN 2012fh at the level. The progenitor was therefore either effectively isolated at the time of explosion or orbited by a black-hole companion. The latter scenario dominates if we only consider models that produce successful supernovae.
Cite
@article{arxiv.2508.21027,
title = {HST Deep Upper Limits Rule Out a Surviving Massive Binary Companion to the Type Ic Supernova 2012fh},
author = {Benjamin F. Williams and Emmanouil Zapartas and Ori D. Fox and K. Azalee Bostroem and Jianing Su and Brad Koplitz and Schuyler D. Van Dyk and Maria R. Drout and Dimitris Souropanis and Dan Milisavljevic and Stuart D. Ryder and Selma E. de Mink and Nathan Smith and Andrew Dolphin and Alexei V. Filippenko and Jeff J. Andrews and Max M. Briel and Seth Gossage and Matthias U. Kruckow and Camille Liotine and Philipp M. Srivastava and Elizabeth Teng},
journal= {arXiv preprint arXiv:2508.21027},
year = {2025}
}
Comments
18 pages, 8 figures, 2 tables, accepted for publication in ApJ