Signatures of Delayed Detonation, Asymmetry, and Electron Capture in the Mid-Infrared Spectra of Supernovae 2003hv and 2005df
arXiv:astro-ph/0702117 · doi:10.1086/516728
Abstract
We present the first mid-infrared (5.2-15.2 micron) spectra of Type Ia supernovae (SNe 2003hv and 2005df). The detection of Ni emission in SN 2005df 135 days after the explosion provides direct observational evidence of high-density nuclear burning forming a significant amount of stable Ni in a Type Ia supernova. The observed emission line profiles in the SN 2005df spectrum indicate a chemically stratified ejecta structure. The SN 2005df Ar lines also exhibit a two-pronged emission profile implying that the Ar emission deviates significantly from spherical symmetry. The spectrum of SN 2003hv also shows signs of asymmetry, exhibiting blueshifted [Co III] which matches the blueshift of [Fe II] lines in nearly coeval NIR spectra. Finally, local thermodynamic equilibrium abundance estimates for the yield of radioactive 56Ni give ~0.5 Msun, for SN 2003hv, but only ~0.13-0.22 Msun for the apparently subluminous SN 2005df, supporting the notion that the luminosity of SNe Ia is primarily a function of the radioactive 56Ni yield. The chemically stratified ejecta structure observed in SN 2005df matches the predictions of delayed-detonation (DD) models, but is entirely incompatible with current three-dimensional deflagration models. Furthermore the degree that this layering persists to the innermost regions of the supernova is difficult to explain even in a DD scenario, where the innermost ejecta are still the product of deflagration burning. Thus, while these results are roughly consistent with a delayed detonation, it is clear that a key piece of physics is still missing from our understanding of the earliest phases of SN Ia explosions.
To appear in The Astrophysical Journal
References in corpus (4)
- Consistent estimates of (56)Ni yields for type Ia supernovae
- Spitzer measurements of atomic and molecular abundances in the Type IIP SN 2005af
- Asymmetric Explosion of Type Ia Supernovae as Seen from Near Infrared Observations
- The Chemical Distribution in a Subluminous Type Ia Supernova: HST Images of the SN 1885 Remnant
Cited by in corpus (74)
- The death of massive stars - I. Observational constraints on the progenitors of type II-P supernovae
- Detonations in Sub-Chandrasekhar Mass C+O White Dwarfs
- The Spectroscopic Diversity of Type Ia Supernovae
- An asymmetric explosion as the origin of spectral evolution diversity in type Ia supernovae
- Constraining Type Ia supernova models: SN 2011fe as a test case
- Nucleosynthesis in Two-Dimensional Delayed Detonation Models of Type Ia Supernova Explosions
- Type Ia Supernovae are Good Standard Candles in the Near Infrared: Evidence from PAIRITEL
- Three-Dimensional Simulations of the Deflagration Phase of the Gravitationally Confined Detonation Model of Type Ia Supernovae
- A Chandrasekhar Mass Progenitor for the Type Ia Supernova Remnant 3C 397 from The Enhanced Abundances of Nickel and Manganese
- Comprehensive Observations of the Bright and Energetic Type Iax SN 2012Z: Interpretation as a Chandrasekhar Mass White Dwarf Explosion
- The normal Type Ia SN 2003hv out to very late phases
- Nebular spectra and abundance tomography of the type Ia supernova SN 2011fe: a normal SN Ia with a stable Fe core
- The Low-Velocity, Rapidly Fading Type Ia Supernova 2002es
- Nebular Spectra and Explosion Asymmetry of Type Ia Supernovae
- Light and color curve properties of type Ia supernovae: Theory vs. Observations
- Formation of Dust in the Ejecta of Type Ia Supernovae
- NTT, Spitzer and Chandra spectroscopy of SDSSJ095209.56+214313.3: the most luminous coronal-line supernova ever observed, or a stellar tidal disruption event ?
- Using late-time optical and near-infrared spectra to constrain Type Ia supernova explosion properties
- Spectroscopic Observations of SN 2012fr: A Luminous Normal Type Ia Supernova with Early High Velocity Features and Late Velocity Plateau
- The Persistence of Memory, or How the X-Ray Spectrum of SNR 0509-67.5 Reveals the Brightness of its Parent Type Ia Supernova
- Effects of Explosion Asymmetry and Viewing Angle on the Type Ia Supernova Color and Luminosity Calibration
- The End of Amnesia: A New Method for Measuring the Metallicity of Type Ia Supernova Progenitors Using Manganese Lines in Supernova Remnants
- CfAIR2: Near Infrared Light Curves of 94 Type Ia Supernovae
- Secondary Parameters of Type Ia Supernova Light Curves
- Polarisation spectral synthesis for Type Ia supernova explosion models
- A review of type Ia supernova spectra
- The Unification of Asymmetry Signatures of Type Ia Supernovae
- Red vs Blue: Early observations of thermonuclear supernovae reveal two distinct populations?
- A Comprehensive Analysis of Spitzer Supernovae
- White Dwarf/M Dwarf Binaries as Single Degenerate Progenitors of Type Ia Supernovae
- Probing type Ia supernova properties using bolometric light curves from the Carnegie Supernova Project and the CfA Supernova Group
- Thermonuclear Supernovae: Probing Magnetic Fields by Late-Time IR Line Profiles
- Mid-IR Spectra of Type Ia SN 2014J in M82 Spanning the First Four Months
- Pulsating reverse detonation models of Type Ia supernovae. II: Explosion
- SNR-calibrated Type Ia supernova models
- Pulsating reverse detonation models of Type Ia supernovae. I: Detonation ignition
- The nebular spectrum of the type Ia supernova 2003hv: evidence for a non-standard event
- On the type Ia supernovae 2007on and 2011iv: Evidence for Chandrasekhar-mass explosions at the faint end of the luminosity-width relationship
- Late-time near-infrared observations of SN 2005df
- How do Type Ia Supernova Nebular Spectra Depend on Explosion Properties? Insights from Systematic non-LTE Modeling
- Spitzer observations of SN 2014J and properties of mid-IR emission in Type Ia supernovae
- Spectroscopy of the Type Ia supernova 2011fe past 1000 days
- The detonation of a sub-Chandrasekhar-mass white dwarf at the origin of the low-luminosity Type Ia supernova 1999by
- A Three-Dimensional Picture of the Delayed-Detonation Model of Type Ia Supernovae
- Ejecta Mass Diagnostics of Type Ia Supernovae
- A JWST Near- and Mid-Infrared Nebular Spectrum of the Type Ia Supernova 2021aefx
- On the Lira law and the nature of extinction towards Type Ia Supernovae
- Exploring the spectroscopic diversity of type Ia supernovae with DRACULA: a machine learning approach
- A Speed Bump: SN 2021aefx Shows that Doppler Shift Alone can Explain Early-Excess Blue Flux in Some Type Ia Supernovae
- Progressive Red Shifts in the Late-Time Spectra of Type Ia Supernovae
- Herschel limits on far-infrared emission from circumstellar dust around nearby Type Ia supernovae
- A Physical Model for SN 2001ay, a normal, bright, extremely slowly declining Type Ia supernova
- Nebular spectroscopy of SN 2014J: Detection of stable nickel in near infrared spectra
- JWST Low-Resolution MIRI Spectral Observations of SN~2021aefx: High-density Burning in a Type Ia Supernova
- Supernovae and Cosmology
- ASASSN-15hy: an under-luminous, red 03fg-like type Ia supernova
- Understanding nebular spectra of Type Ia supernovae
- The Mid-Infrared and Optical Decay of SN 2011fe
- Nebular spectra from Type Ia supernova explosion models compared to JWST observations of SN 2021aefx
- Signatures of Bimodality in Nebular Phase Type Ia Supernova Spectra
- Evidence for asymmetric distribution of circumstellar material around Type Ia Supernovae
- Physics of Thermonuclear Explosions: Magnetic Field Effects on Deflagration Fronts and Observable Consequences
- Type Ia supernova explosion models are inherently multidimensional
- The Core Normal Type Ia Supernova 2019np: An Overall Spherical Explosion with an Aspherical Surface Layer and an Aspherical 56Ni Core
- Nebular-Phase Spectra of Type Ia Supernovae from the Las Cumbres Observatory Global Supernova Project
- Near-infrared light curves of type Ia supernovae
- Photoionization of Co and electron-impact excitation of Co using the Dirac R-matrix method
- Artificial Intelligence Assisted Inversion (AIAI) of Synthetic Type Ia Supernova Spectra
- Type Ia Supernova Progenitor Properties and Their Host Galaxies
- Supernova Resonance--scattering Line Profiles in the Absence of a Photosphere
- Merging White Dwarfs and Thermonuclear Supernovae
- The Search for Stable Nickel: Investigating the Origins of Type Ia Supernovae with Late-time NIR Spectroscopy from the Carnegie Supernova Project-II
- Gamma rays from a supernova of type Ia: SN2014J
- Prospects for Studies of Stellar Evolution and Stellar Death in the JWST Era