Early light curves for Type Ia supernova explosion models
arXiv:1706.03613 · doi:10.1093/mnras/stx2093
Abstract
Upcoming high-cadence transient survey programmes will produce a wealth of observational data for Type Ia supernovae. These data sets will contain numerous events detected very early in their evolution, shortly after explosion. Here, we present synthetic light curves, calculated with the radiation hydrodynamical approach Stella for a number of different explosion models, specifically focusing on these first few days after explosion. We show that overall the early light curve evolution is similar for most of the investigated models. Characteristic imprints are induced by radioactive material located close to the surface. However, these are very similar to the signatures expected from ejecta-CSM or ejecta-companion interaction. Apart from the pure deflagration explosion models, none of our synthetic light curves exhibit the commonly assumed power-law rise. We demonstrate that this can lead to substantial errors in the determination of the time of explosion. In summary, we illustrate with our calculations that even with very early data an identification of specific explosion scenarios is challenging, if only photometric observations are available.
15 pages, 14 figures, 3 tables, accepted for publication in MNRAS
References in corpus (20)
- The NumPy array: a structure for efficient numerical computation
- Double-detonation sub-Chandrasekhar supernovae: can minimum helium shell masses detonate the core?
- Time Dependent Monte Carlo Radiative Transfer Calculations For 3-Dimensional Supernova Spectra, Lightcurves, and Polarization
- Double-detonation sub-Chandrasekhar supernovae: synthetic observables for minimum helium shell mass models
- Theoretical light curves for deflagration models of Type Ia supernova
- The Peculiar SN 2005hk: Do Some Type Ia Supernovae Explode as Deflagrations?
- Strong Ultraviolet Pulse From a Newborn Type Ia Supernova
- The Initiation and Propagation of Helium Detonations in White Dwarf Envelopes
- Deflagrations in hybrid CONe white dwarfs: a route to explain the faint Type Iax supernova 2008ha
- The Rising Light Curves of Type Ia Supernovae
- The Rise and Fall of Type Ia Supernova Light Curves in the SDSS-II Supernova Survey
- Early 56Ni decay γ-rays from SN2014J suggest an unusual explosion
- The Rise Time of Type Ia Supernovae from the Supernova Legacy Survey
- Fast evolving pair-instability supernova models: evolution, explosion, light curves
- Constraints on the origin of the first light from SN2014J
- Type Ia supernovae within dense carbon-oxygen rich envelopes: a model for 'Super-Chandrasekhar' explosions?
- Hydrogenless Superluminous Supernova PTF12dam in the Model of an Explosion inside an Extended Envelope
- Monte Carlo radiation hydrodynamics: methods, tests and application to supernova Type Ia ejecta
- A metric space for type Ia supernova spectra: a new method to assess explosion scenarios
- Simulating the observed diversity of Type Ia supernovae - Introducing a model data base
Cited by in corpus (8)
- A hybrid type Ia supernova with an early flash triggered by helium-shell detonation
- ZTF Early Observations of Type Ia Supernovae I: Properties of the 2018 Sample
- Determining the Ni distribution of type Ia supernovae from observations within days of explosion
- Rates and delay times of Type Ia supernovae in the helium-enriched main-sequence donor scenario
- Possible Contribution of Magnetized White Dwarf Binaries to Type Ia Supernova Populations
- Exploring the shell model of high-velocity features of Type Ia supernovae using TARDIS
- Constraining Type Ia Supernova Asymmetry with the Gamma-Ray Escape Timescale
- The Carnegie Supernova Project II. Early observations and progenitor constraints of the Type Ib supernova LSQ13abf