English

SN 2022joj: A Potential Double Detonation with a Thin Helium shell

High Energy Astrophysical Phenomena 2023-08-15 v1 Solar and Stellar Astrophysics

Abstract

We present photometric and spectroscopic data for SN 2022joj, a nearby peculiar Type Ia supernova (SN Ia) with a fast decline rate (Δm15,B=1.4\rm{\Delta m_{15,B}=1.4} mag). SN 2022joj shows exceedingly red colors, with a value of approximately BV1.1{B-V \approx 1.1} mag during its initial stages, beginning from 1111 days before maximum brightness. As it evolves the flux shifts towards the blue end of the spectrum, approaching BV0{B-V \approx 0} mag around maximum light. Furthermore, at maximum light and beyond, the photometry is consistent with that of typical SNe Ia. This unusual behavior extends to its spectral characteristics, which initially displayed a red spectrum and later evolved to exhibit greater consistency with typical SNe Ia. We consider two potential explanations for this behavior: double detonation from a helium shell on a sub-Chandrasekhar-mass white dwarf and Chandrasekhar-mass models with a shallow distribution of 56Ni\rm{^{56}Ni}. The shallow nickel models could not reproduce the red colors in the early light curves. Spectroscopically, we find strong agreement between SN 2022joj and double-detonation models with white dwarf masses around 1 M\rm{M_{\odot}} and thin He-shell between 0.01 and 0.02 M\rm{M_{\odot}}. Moreover, the early red colors are explained by line-blanketing absorption from iron-peak elements created by the double detonation scenario in similar mass ranges. However, the nebular spectra composition in SN 2022joj deviates from expectations for double detonation, as we observe strong [Fe III] emission instead of [Ca II] lines as anticipated from double detonation models. More detailed modeling, e.g., including viewing angle effects, is required to test if double detonation models can explain the nebular spectra.

Keywords

Cite

@article{arxiv.2308.06334,
  title  = {SN 2022joj: A Potential Double Detonation with a Thin Helium shell},
  author = {E. Padilla Gonzalez and D. A. Howell and G. Terreran and C. McCully and M. Newsome and J. Burke and J. Farah and C. Pellegrino and K. A. Bostroem and G. Hosseinzadeh and J. Pearson and D. J. Sand and M. Shrestha and N. Smith and Y. Dong and N. Meza Retamal and S. Valenti and S. Boos and K. J. Shen and D. Townsley and L. Galbany and L. Piscarreta and R. J. Foley and M. J. Bustamante-Rosell and D. A. Coulter and R. Chornock and K. W. Davis and C. B. Dickinson and D. O. Jones and J. Kutcka and X. K. Le Saux and C. R. Rojas-Bravo and K. Taggart and S. Tinyanont and G. Yang and S. W. Jha and R. Margutti},
  journal= {arXiv preprint arXiv:2308.06334},
  year   = {2023}
}
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