Detonating Failed Deflagration Model of Thermonuclear Supernovae II. Comparison to Observations
arXiv:astro-ph/0612198 · doi:10.1086/516834
Abstract
We develop and demonstrate the methodology of testing multi-dimensional supernova models against observations by studying the properties of one example of the detonation from failed deflagration (DFD) explosion model of thermonuclear supernovae. Using time-dependent multi-dimensional radiative transfer calculations, we generate the synthetic broadband optical light curves, near-infrared light curves, color evolution curves, full spectral time-series, and spectropolarization of the model, as seen from various viewing angles. All model observables are critically evaluated against examples of well-observed, standard Type Ia supernovae (SNe Ia). We explore the consequences of the intrinsic model asphericity by studying the dependence of the model emission on viewing angle, and by quantifying the resulting dispersion in (and internal correlations between) various model observables. These statistical properties of the model are also evaluated against those of the available observational sample of SNe Ia. On the whole, the DFD model shows good agreement with a broad range of SN Ia observations. Certain deficiencies are also apparent, and point to further developments within the basic theoretical framework. We also identify several intriguing orientation effects in the model which suggest ways in which the asphericity of SNe Ia may contribute to their photometric and spectroscopic diversity and, conversely, how the relative homogeneity of SNe Ia constrains the degree of asymmetry allowable in the models. The comprehensive methodology adopted in this work proves an essential component of developing and validating theoretical supernova models, and helps motivate and clearly define future directions in both the modeling and the observation of SNe Ia.
14 pages, submitted to ApJ
References in corpus (10)
- Time Dependent Monte Carlo Radiative Transfer Calculations For 3-Dimensional Supernova Spectra, Lightcurves, and Polarization
- Theoretical light curves for deflagration models of Type Ia supernova
- Secondary Maximum in the Near-Infrared Lightcurves of Type Ia Supernovae
- On the Origin of the Type Ia Supernova Width-Luminosity Relation
- Off-center ignition in type Ia supernova: I. Initial evolution and implications for delayed detonation
- Consistent estimates of (56)Ni yields for type Ia supernovae
- The Rise Time of Type Ia Supernovae from the Supernova Legacy Survey
- Spectropolarimetry of the Peculiar Type Ia SN 2005hk
- Detonating Failed Deflagration Model of Thermonuclear Supernovae I. Explosion Dynamics
- Spectral Modeling of SNe Ia Near Maximum Light: Probing the Characteristics of Hydro Models
Cited by in corpus (48)
- Spectropolarimetry of Supernovae
- The Spectroscopic Diversity of Type Ia Supernovae
- An asymmetric explosion as the origin of spectral evolution diversity in type Ia supernovae
- Measuring Ejecta Velocity Improves Type Ia Supernova Distances
- Spectroscopy of Type Ia Supernovae by the Carnegie Supernova Project
- The Rise-Time Distribution of Nearby Type Ia Supernovae
- The Rise and Fall of Type Ia Supernova Light Curves in the SDSS-II Supernova Survey
- Velocity Evolution and the Intrinsic Color of Type Ia Supernovae
- Type Ia Supernovae from Merging White Dwarfs I. Prompt Detonations
- SN 2006bt: A Perplexing, Troublesome, and Possibly Misleading Type Ia Supernova
- Berkeley Supernova Ia Program II: Initial Analysis of Spectra Obtained Near Maximum Brightness
- Study of the Detonation Phase in the Gravitationally Confined Detonation Model of Type Ia Supernovae
- Spectropolarimetry of Extremely Luminous Type Ia Supernova 2009dc: Nearly Spherical Explosion of Super-Chandrasekhar Mass White Dwarf
- Photometric and Spectroscopic Properties of Type Ia Supernova 2018oh with Early Excess Emission from the 2 Observations
- Effects of Explosion Asymmetry and Viewing Angle on the Type Ia Supernova Color and Luminosity Calibration
- Three-dimensional simulations of gravitationally confined detonations compared to observations of SN 1991T
- SN 2005hj: Evidence for Two Classes of Normal-Bright SNe Ia and Implications for Cosmology
- Nucleosynthesis imprints from different Type Ia Supernova explosion scenarios and implications for galactic chemical evolution
- Berkeley Supernova Ia Program III: Spectra Near Maximum Brightness Improve the Accuracy of Derived Distances to Type Ia Supernovae
- Confronting 2D delayed-detonation models with light curves and spectra of Type Ia supernovae
- Pulsating reverse detonation models of Type Ia supernovae. II: Explosion
- The Relation Between Ejecta Velocity, Intrinsic Color, and Host-Galaxy Mass for High-Redshift Type Ia Supernovae
- A new hydrodynamics code for Type Ia Supernovae
- Type Ia Supernova Colors and Ejecta Velocities: Hierarchical Bayesian Regression with Non-Gaussian Distributions
- On Spectral Line Profiles in Type Ia Supernova Spectra
- OGLE-2013-SN-079: a lonely supernova consistent with a helium shell detonation
- On the gamma-ray emission of Type Ia Supernovae
- Red and Reddened: Ultraviolet through Near-Infrared Observations of Type Ia Supernova 2017erp
- Evidence for a correlation between the Si II 4000 width and Type Ia supernova color
- Dark Matter Admixed Type Ia Supernovae
- Nuclear Statistical Equilibrium neutrino spectrum
- Models of pulsationally assisted gravitationally confined detonations with different ignition conditions
- Comparative Analysis of SN 2012dn Optical Spectra: Days -14 to +114
- Constraining the Source of the High-velocity Ejecta in Type Ia SN 2019ein
- From Out of the Blue: Swift Links 2002es-like, 2003fg-like, and Early-Time Bump Type Ia Supernovae
- No double detonations but core carbon ignitions in high-resolution, grid-based simulations of binary white dwarf mergers
- Delayed Detonation Thermonuclear Supernovae With An Extended Dark Matter Component
- Asymmetry and the Nucleosynthetic Signature of Nearly Edge-Lit Detonation in White Dwarf Cores
- The Ultraviolet Colors of Type Ia Supernovae and their Photospheric Velocities
- Distribution of Si II 6355 Velocities of Type Ia Supernovae and Implications for Asymmetric Explosions
- A Precision Photometric Comparison between SDSS-II and CSP Type Ia Supernova Data
- SN 2015bq: A Luminous Type Ia Supernova with Early Flux Excess
- Observations of A Fast-Expanding and UV-Bright Type Ia Supernova SN 2013gs
- Comparing the light curves of simulated Type Ia Supernovae with observations using data-driven models
- Spectral synthesis techniques for supernovae and kilonovae
- Energetic constraints to chemo-photometric evolution of spiral galaxies
- Spectropolarimetry of the Type Ia SN 2019ein rules out significant global asphericity of the ejecta
- Chemical enrichment of ICM within the A3266 cluster I: radial profiles