SN 2016dsg: A Thermonuclear Explosion Involving A Thick Helium Shell
arXiv:2206.07065 · doi:10.3847/1538-4357/ac75eb
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 -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 7773 absorption lines, and do not evolve significantly over 30 days. An absorption line around 9700-10500 Åis 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.
accepted for publication in ApJ
References in corpus (18)
- Wilkinson Microwave Anisotropy Probe (WMAP) Three Year Results: Implications for Cosmology
- Double-detonation sub-Chandrasekhar supernovae: can minimum helium shell masses detonate the core?
- Faint Thermonuclear Supernovae from AM Canum Venaticorum Binaries
- PESSTO : survey description and products from the first data release by the Public ESO Spectroscopic Survey of Transient Objects
- Double-detonation sub-Chandrasekhar supernovae: synthetic observables for minimum helium shell mass models
- The Initiation and Propagation of Helium Detonations in White Dwarf Envelopes
- A hybrid type Ia supernova with an early flash triggered by helium-shell detonation
- Gaia Photometric Science Alerts
- Evidence for sub-Chandrasekhar-mass progenitors of Type Ia supernovae at the faint end of the width-luminosity relation
- Double Detonations with Thin, Modestly Enriched Helium Layers Can Make Normal Type Ia Supernovae
- Early light curves for Type Ia supernova explosion models
- ZTF 18aaqeasu (SN 2018byg): A Massive Helium-shell Double Detonation on a Sub-Chandrasekhar Mass White Dwarf
- The progenitors of calcium-rich transients are not formed in situ
- One-dimensional non-LTE time-dependent radiative transfer of an He-detonation model and the connection to faint and fast-decaying supernovae
- Helium in Double-Detonation Models of Type Ia Supernovae
- OGLE-2013-SN-079: a lonely supernova consistent with a helium shell detonation
- Exploring the diversity of double detonation explosions for type Ia supernovae: Effects of the post-explosion helium shell composition
- Turbulent Mixing on Helium-Accreting White Dwarfs
Cited by in corpus (9)
- Double detonations: variations in Type Ia supernovae due to different core and He shell masses -- II: synthetic observables
- Helium as a signature of the double detonation in Type Ia supernovae
- Peculiar Spectral Evolution of the Type I Supernova 2019eix: A Possible Double Detonation from a Helium Shell on a Sub-Chandrasekhar-mass White Dwarf
- SN 2022joj: A Peculiar Type Ia Supernova Possibly Driven by an Asymmetric Helium-shell Double Detonation
- Exploring the range of impacts of helium in the spectra of double detonation models for Type Ia supernovae
- Direct Analysis of the Broad-Line SN 2019ein: Connection with the Core-Normal SN 2011fe
- Nested, asymmetric H-He circumstellar shells in the Type Icn/Ibn SN 2024abvb
- The evolution of relative frequencies of ONe and CO SNe Ia
- Strong Carbon Features and a Red Early Color in the Underluminous Type Ia SN 2022xkq