English

SN 2016dsg: A Thermonuclear Explosion Involving A Thick Helium Shell

Solar and Stellar Astrophysics 2022-08-03 v1 High Energy Astrophysical Phenomena

Abstract

A thermonuclear explosion triggered by a helium-shell detonation on a carbon-oxygen white dwarf core has been predicted to have strong UV line blanketing at early times due to the iron-group elements produced during helium-shell burning. We present the photometric and spectroscopic observations of SN 2016dsg, a sub-luminous peculiar Type I SN consistent with a thermonuclear explosion involving a thick He shell. With a redshift of 0.04, the ii-band peak absolute magnitude is derived to be around -17.5. The object is located far away from its host, an early-type galaxy, suggesting it originated from an old stellar population. The spectra collected after the peak are unusually red, show strong UV line blanketing and weak O I λ\lambda7773 absorption lines, and do not evolve significantly over 30 days. An absorption line around 9700-10500 \AA is detected in the near-infrared spectrum and is likely from the unburnt helium in the ejecta. The spectroscopic evolution is consistent with the thermonuclear explosion models for a sub-Chandrasekhar mass white dwarf with a thick helium shell, while the photometric evolution is not well described by existing models.

Keywords

Cite

@article{arxiv.2206.07065,
  title  = {SN 2016dsg: A Thermonuclear Explosion Involving A Thick Helium Shell},
  author = {Yize Dong and Stefano Valenti and Abigail Polin and Aoife Boyle and Andreas Flörs and Christian Vogl and Wolfgang Kerzendorf and David Sand and Saurabh Jha and Lukasz Wyrzykowski and K. Bostroem and Jeniveve Pearson and Curtis McCully and Jennifer Andrew and Stefano Benettii and Stephane Blondin and Lluís Galbany and Mariusz Gromadzki and Griffin Hosseinzadeh and D. Andrew Howell and Cosimo Inserra and Jacob Jencson and M. Lundquist and Joseph Lyman and Mark Magee and Kate Maguire and Nicolas Meza and Shubham Srivastav and Stefan Taubenberger and J Terwel and Samuel Wyatt and David Young},
  journal= {arXiv preprint arXiv:2206.07065},
  year   = {2022}
}

Comments

accepted for publication in ApJ

R2 v1 2026-06-24T11:51:13.458Z