NLTE Spectral Modelling of the Nearby Stripped-Envelope Supernova 2024ehs
Abstract
We present a detailed study of the Type IIb supernova 2024ehs, discovered in March 2024 in the nearby galaxy NGC 3443 at a distance of Mpc. Using photometric and spectroscopic observations spanning 10 months, we analyse its light curve, spectral evolution, and physical properties with the \texttt{SUMO} radiative transfer code. SN 2024ehs exhibits a narrow light-curve peak, rapid decline, and weak helium lines, distinguishing it from typical Type IIb supernovae. Comparisons with other objects, including SNe 1993J and 2020acat, and modelling of nebular spectra suggest a low ejecta mass, high velocities (20,000 \kms), and a Ni mass just below . Furthermore, the nebular spectral models indicate a progenitor with a helium core mass of , consistent with a zero-age main-sequence mass of . The composition of spectra is explored through photospheric modelling, finding a link between expansion velocity and the relative strength of different element lines. This work discusses further the diversity of stripped-envelope supernovae and the role of binary interactions for their progenitors, and demonstrates the need for further modelling to refine Ni mass estimates and to understand the physical mechanisms driving their evolution.
Keywords
Cite
@article{arxiv.2606.30796,
title = {NLTE Spectral Modelling of the Nearby Stripped-Envelope Supernova 2024ehs},
author = {Wilmer Sand Hellman and Seán J. Brennan and Stan Bartmentloo and Christoffer Fremling and Anjasha Gangopadhyay and Anders Jerkstrand and Ragnhild Lunnan and Josiah Purdum and Steve Schulze and Jesper Sollerman},
journal= {arXiv preprint arXiv:2606.30796},
year = {2026}
}
Comments
Submitted for review to A&A