Properties of Type Iax Supernova 2019muj in the Late Phase: Existence, Nature and Origin of the Iron-rich Dense Core
arXiv:2210.14390 · doi:10.3847/1538-4357/ac9df2
Abstract
Type Iax Supernovae (SNe Iax) form a class of peculiar SNe Ia, whose early-phase spectra share main spectral line identifications with canonical SNe Ia but with higher ionization and much lower line velocities. Their late-time behaviors deviate from usual SNe Ia in many respects; SNe Iax keep showing photospheric spectra over several 100 days and the luminosity decline is very slow. In the present work, we study the late-time spectra of SN Iax 2019muj including a newly-presented spectrum at ~500 days. The spectrum is still dominated by allowed transitions but with lower ionization state, with possible detection of [O I]6300, 6363. By comprehensively examining the spectral formation processes of allowed transitions (Fe II, Fe I, and the Ca II NIR triplet) and forbidden transitions ([Ca II]7292, 7324 and the [O I]), we quantitatively constrain the nature of the innermost region and find that it is distinct from the outer ejecta; the mass of the innermost component is ~0.03 Msun dominated by Fe (which can be initially 56Ni), expanding with the velocity of ~760 km/s. We argue that the nature of the inner component is explained by the failed/weak white-dwarf thermonuclear explosion scenario. We suggest that a fraction of the 56Ni-rich materials initially confined in (the envelope of) the bound remnant can later be ejected by the energy input through the 56Ni/Co/Fe decay, forming the `second' unbound ejecta component which manifests itself as the inner dense component seen in the late phase.
35 pages, 18 figures. Accepted for publication in ApJ
References in corpus (24)
- Secondary Maximum in the Near-Infrared Lightcurves of Type Ia Supernovae
- Late-Time Spectroscopy of SN 2002cx: The Prototype of a New Subclass of Type Ia Supernovae
- Unstable Helium Shell Burning on Accreting White Dwarfs
- Observational Properties of Thermonuclear Supernovae
- Fallback Supernovae: A Possible Origin of Peculiar Supernovae with Extremely Low Explosion Energies
- Deflagrations in hybrid CONe white dwarfs: a route to explain the faint Type Iax supernova 2008ha
- Comprehensive Observations of the Bright and Energetic Type Iax SN 2012Z: Interpretation as a Chandrasekhar Mass White Dwarf Explosion
- The evolution of the peculiar Type Ia supernova SN 2005hk over 400 days
- Progenitors of type Ia supernovae
- SN 2006aj Associated with XRF 060218 At Late Phases: Nucleosynthesis-Signature of A Neutron Star-Driven Explosion
- Possible Detection of the Stellar Donor or Remnant for the Type Iax Supernova 2008ha
- Catalog of Visually Classified Galaxies in the Local () Universe
- Wait for it: Post-supernova winds driven by delayed radioactive decays
- Investigating the diversity of supernovae type Iax: A MUSE and NOT spectroscopic study of their environments
- Transients from ONe White-Dwarf - Neutron-Star/Black-Hole Mergers
- Signatures of A Companion Star in Type Ia Supernovae
- Still Brighter than Pre-Explosion, SN 2012Z Did Not Disappear: Comparing Hubble Space Telescope Observations a Decade Apart
- The lowest of the low: discovery of SN 2019gsc and the nature of faint Iax supernovae
- Abundance Tomography of Type Iax SN 2011ay with TARDIS
- Observational Characteristics and Possible Asphericity of Over-Luminous Type Ia Supernovae
- SN 2019muj -- a well-observed Type Iax supernova that bridges the luminosity gap of the class
- The interaction of Type Iax supernova ejecta with a helium companion star
- Intermediate Luminosity Type Iax SN 2019muj With Narrow Absorption Lines: Long-Lasting Radiation Associated With a Possible Bound Remnant Predicted by the Weak Deflagration Model
- An analysis of the spectroscopic signatures of layering in the ejecta of type Iax supernovae
Cited by in corpus (4)
- Initial Flash and Spectral Formation of Type Ia Supernovae with An Envelope: Applications to Over-luminous SNe Ia
- Over 500 Days in the Life of the Photosphere of the Type Iax Supernova SN 2014dt
- SN 2020udy: a SN Iax with strict limits on interaction consistent with a helium-star companion
- Including a Luminous Central Remnant in Radiative Transfer Simulations for Type Iax Supernovae