Massive stars exploding in a He-rich circumstellar medium XII. SN 2024acyl: A fast, linearly declining Type Ibn supernova with early flash-ionisation features
Abstract
We present a photometric and spectroscopic analysis of the Type Ibn supernova (SN) 2024acyl. It rises to an absolute magnitude peak of about -17.58 mag in 10.6 days, and displays a rapid linear post-peak light-curve decline in all bands, similar to most SNe Ibn. The optical pseudobolometric light curve peaks at erg s, with a total radiated energy of erg. The spectra are dominated by a blue continuum at early stages, with narrow P Cygni He I lines and flash-ionisation emission lines of C III, N III, and He II. The P Cygni He I features gradually evolve and become emission-dominated in late-time spectra. Our multi-band light-curve modelling yields estimates of the ejecta mass of M with a kinetic energy of erg, and a Ni mass of M. The inferred CSM properties are characterised by a mass of M, an inner radius of AU, and a density of g cm. The multi-epoch spectra are well reproduced by the CMFGEN/he4p0 model, corresponding to a He-ZAMS mass of 4 M (H-ZAMS mass 18.11 M, pre-SN mass 3.16 M). These findings are consistent with a scenario of an SN powered by ejecta-CSM interaction, originating from a low-mass helium star that evolved within an interacting binary system where the CSM with some residual hydrogen may originate from the mass-transfer process. In addition, a channel of core-collapse explosion of a late-type Wolf-Rayet star with H, or an Ofpe/WN9 star with fallback accretion, cannot be entirely ruled out.
Keywords
Cite
@article{arxiv.2511.04337,
title = {Massive stars exploding in a He-rich circumstellar medium XII. SN 2024acyl: A fast, linearly declining Type Ibn supernova with early flash-ionisation features},
author = {Y. -Z. Cai and A. Pastorello and K. Maeda and J. -W. Zhao and Z. -Y. Wang and Z. -H. Peng and A. Reguitti and L. Tartaglia and A. V. Filippenko and Y. Pan and G. Valerin and B. Kumar and Z. Wang and M. Fraser and J. P. Anderson and S. Benetti and S. Bose and T. G. Brink and E. Cappellaro and T. -W. Chen and X. -L. Chen and N. Elias-Rosa and A. Esamdin and A. Gal-Yam and M. González-Bañuelos and M. Gromadzki and C. P. Gutiérrez and A. Iskandar and C. Inserra and T. Kangas and E. Kankare and T. Kravtsov and H. Kuncarayakti and L. -P. Li and C. -X. Liu and X. -K. Liu and P. Lundqvist and K. Matilainen and S. Mattila and S. Moran and T. E. Müller-Bravo and T. Nagao and T. Petrushevska and G. Pignata and I. Salmaso and S. J. Smartt and J. Sollerman and M. D. Stritzinger and S. Srivastav and L. -T. Wang and S. -Y. Yan and Y. Yang and Y. -P. Yang and W. Zheng and X. -Z. Zou and L. -Y. Chen and X. -L. Du and Q. -L. Fang and A. Fiore and F. Ragosta and S. Zha and J. -J. Zhang and X. -W. Liu and J. -M. Bai and B. Wang and X. -F. Wang},
journal= {arXiv preprint arXiv:2511.04337},
year = {2026}
}
Comments
19 pages, 12 figures. Accepted for publication in Astronomy and Astrophysics