Nebular spectra and abundance tomography of the type Ia supernova SN 2011fe: a normal SN Ia with a stable Fe core
arXiv:1504.04857 · doi:10.1093/mnras/stv761
Abstract
A series of optical and one near-infrared nebular spectra covering the first year of the Type Ia supernova SN 2011fe are presented and modelled. The density profile that proved best for the early optical/ultraviolet spectra, "rho-11fe", was extended to lower velocities to include the regions that emit at nebular epochs. Model rho-11fe is intermediate between the fast deflagration model W7 and a low-energy delayed-detonation. Good fits to the nebular spectra are obtained if the innermost ejecta are dominated by neutron-rich, stable Fe-group species, which contribute to cooling but not to heating. The correct thermal balance can thus be reached for the strongest [FeII] and [FeIII] lines to be reproduced with the observed ratio. The 56Ni mass thus obtained is 0.47 +/- 0.05 Mo. The bulk of 56Ni has an outermost velocity of ~8500 km/s. The mass of stable iron is 0.23 +/- 0.03 Mo. Stable Ni has low abundance, ~10^{-2} Mo. This is sufficient to reproduce an observed emission line near 7400 A. A sub-Chandrasekhar explosion model with mass 1.02 Mo and no central stable Fe does not reproduce the observed line ratios. A mock model where neutron-rich Fe-group species are located above 56Ni following recent suggestions is also shown to yield spectra that are less compatible with the observations. The densities and abundances in the inner layers obtained from the nebular analysis, combined with those of the outer layers previously obtained, are used to compute a synthetic bolometric light curve, which compares favourably with the light curve of SN 2011fe.
14 pages, 8 figures, to appear in MNRAS
References in corpus (7)
- Double-detonation sub-Chandrasekhar supernovae: can minimum helium shell masses detonate the core?
- A Common Explosion Mechanism for Type Ia Supernovae
- On the Origin of the Type Ia Supernova Width-Luminosity Relation
- Abundance stratification in Type Ia Supernovae - II: The rapidly declining, spectroscopically normal SN 2004eo
- Asymmetric Explosion of Type Ia Supernovae as Seen from Near Infrared Observations
- Abundance stratification in Type Ia Supernovae - IV: the luminous, peculiar SN 1991T
- Herschel limits on far-infrared emission from circumstellar dust around nearby Type Ia supernovae
Cited by in corpus (38)
- Nebular-Phase Spectra of Nearby Type Ia Supernovae
- Wait for it: Post-supernova winds driven by delayed radioactive decays
- Sub-Chandrasekhar progenitors favoured for type Ia supernovae: Evidence from late-time spectroscopy
- Nebular Emission from Lanthanide-rich Ejecta of Neutron Star Merger
- Monte Carlo radiative transfer for the nebular phase of Type Ia supernovae
- Abundance stratification in Type Ia supernovae - V. SN 1986G bridging the gap between normal and subluminous SNe Ia
- Berkeley Supernova Ia Program: Data Release of 637 Spectra from 247 Type Ia Supernovae
- iPTF15eqv: Multi-wavelength Exposé of a Peculiar Calcium-rich Transient
- Ejecta Mass Diagnostics of Type Ia Supernovae
- A JWST Near- and Mid-Infrared Nebular Spectrum of the Type Ia Supernova 2021aefx
- JWST Low-Resolution MIRI Spectral Observations of SN~2021aefx: High-density Burning in a Type Ia Supernova
- SN2019yvq Does Not Conform to SN Ia Explosion Models
- Nebular spectra from Type Ia supernova explosion models compared to JWST observations of SN 2021aefx
- The origin and evolution of the normal Type Ia SN 2018aoz with infant-phase reddening and excess emission
- A Rapid Ionization Change in the Nebular-Phase Spectra of the Type Ia SN 2011fe
- The Whisper of a Whimper of a Bang: 2400 Days of the Type Ia SN 2011fe Reveals the Decay of Fe
- The intermediate nebular phase of SN 2014J: onset of clumping as the source of recombination
- Nebular-Phase Spectra of Type Ia Supernovae from the Las Cumbres Observatory Global Supernova Project
- Over 500 Days in the Life of the Photosphere of the Type Iax Supernova SN 2014dt
- Type Ia Supernova Models: Asymmetric Remnants and Supernova Remnant G1.9+0.3
- Near-infrared and Optical Nebular-phase Spectra of Type Ia Supernovae SN 2013aa and SN 2017cbv in NGC 5643
- Initial 56Ni Masses in Type Ia Supernovae
- Photometric study of the late-time near-infrared plateau in Type Ia supernovae
- PTF11rka: an interacting supernova at the crossroads of stripped-envelope and H-poor super-luminous stellar core collapses
- Searching for late-time interaction signatures in Type Ia supernovae from the Zwicky Transient Facility
- SN 2022joj: A Peculiar Type Ia Supernova Possibly Driven by an Asymmetric Helium-shell Double Detonation
- SN 2019ein: A Type Ia Supernova Likely Originated from a Sub-Chandrasekhar-Mass Explosion
- Optical and ultraviolet spectroscopic analysis of SN 2011fe at late times
- Abundance stratification in type Ia supernovae -- VI: the peculiar slow decliner SN\,1999aa
- A metric space for type Ia supernova spectra: a new method to assess explosion scenarios
- Constraining Type Ia Supernova Asymmetry with the Gamma-Ray Escape Timescale
- Deriving Thermonuclear Supernova Properties from Gamma-Ray Line Measurements
- Synthesis of radioactive elements in novae and supernovae and their use as a diagnostic tool
- GRB 180728A and SN 2018fip: the nearest high-energy cosmological gamma-ray burst with an associated supernova
- Plasma Instabilities Dominate Radioactive Transients Magnetic Fields: The self-confinement of leptons in Type Ia and Core-Collapse Supernovae, and Kilonovae
- Normal or transitional? The evolution and properties of two type Ia supernovae in the Virgo cluster
- Abundance stratification in type Ia supernovae -- VII. The peculiar, C-rich iPTF16abc: highlighting diversity among luminous events
- Diversity of Type Ia supernova optical light curves among different spectroscopic subclasses