Shock Breakout from Type Ia Supernova
arXiv:0909.2643 · doi:10.1088/0004-637X/708/1/598
Abstract
The mode of explosive burning in Type Ia SNe remains an outstanding problem. It is generally thought to begin as a subsonic deflagration, but this may transition into a supersonic detonation (the DDT). We argue that this transition leads to a breakout shock, which would provide the first unambiguous evidence that DDTs occur. Its main features are a hard X-ray flash (~20 keV) lasting ~0.01 s with a total radiated energy of ~10^{40} ergs, followed by a cooling tail. This creates a distinct feature in the visual light curve, which is separate from the nickel decay. This cooling tail has a maximum absolute visual magnitude of M_V = -9 to -10 at approximately 1 day, which depends most sensitively on the white dwarf radius at the time of the DDT. As the thermal diffusion wave moves in, the composition of these surface layers may be imprinted as spectral features, which would help to discern between SN Ia progenitor models. Since this feature should accompany every SNe Ia, future deep surveys (e.g., m=24) will see it out to a distance of approximately 80 Mpc, giving a maximum rate of ~60/yr. Archival data sets can also be used to study the early rise dictated by the shock heating (at about 20 days before maximum B-band light). A similar and slightly brighter event may also accompany core bounce during the accretion induced collapse to a neutron star, but with a lower occurrence rate.
Submitted for publication in The Astrophysical Journal on June 12, 2009; 7 pages, 5 figures
References in corpus (15)
- The shock break-out of GRB 060218/SN 2006aj
- An extremely luminous X-ray outburst at the birth of a supernova
- A neutron-star-driven X-ray flash associated with supernova SN 2006aj
- Multi-Dimensional Simulations of the Accretion-Induced Collapse of White Dwarfs to Neutron Stars
- A three-dimensional deflagration model for Type Ia supernovae confronted with observations
- Unstable Helium Shell Burning on Accreting White Dwarfs
- Fast radiation mediated shocks and supernova shock breakouts
- Supernova Shock Breakout from a Red Supergiant
- A Measurement of the Rate of type-Ia Supernovae at Redshift 0.1 from the First Season of the SDSS-II Supernova Survey
- The Rise Time of Type Ia Supernovae from the Supernova Legacy Survey
- Magnetically-driven explosions of rapidly-rotating white dwarfs following Accretion-Induced Collapse
- Type Ia Supernova: Burning and Detonation in the Distributed Regime
- The Effect of Composition on Nova Ignitions
- Carbon Detonation and Shock-Triggered Helium Burning in Neutron Star Superbursts
- X- and Gamma-Ray Flashes from Type Ia Supernovae?
Cited by in corpus (85)
- Observational clues to the progenitors of Type-Ia supernovae
- Supernova 2011fe from an Exploding Carbon-Oxygen White Dwarf Star
- Early supernovae light-curves following the shock-breakout
- A Compact Degenerate Primary-Star Progenitor of SN 2011fe
- Observing the Next Galactic Supernova
- Relativistic shock breakouts - a variety of gamma-ray flares: from low luminosity gamma-ray bursts to type Ia supernovae
- Supernova PTF 09uj: A possible shock breakout from a dense circumstellar wind
- What Can We Learn from the Rising Lightcurves of Radioactively-Powered Supernovae?
- Sub-Chandrasekhar White Dwarf Mergers as the Progenitors of Type Ia Supernovae
- Time Dependent Radiative Transfer Calculations for Supernovae
- The Extremes of Thermonuclear Supernovae
- Supernovae with Two Peaks in the Optical Light Curve and the Signature of Progenitors with Low-mass Extended Envelopes
- Science with a wide-field UV transient explorer
- Early Blue Excess from the Type Ia Supernova 2017cbv and Implications for Its Progenitor
- A hybrid type Ia supernova with an early flash triggered by helium-shell detonation
- The Rising Light Curves of Type Ia Supernovae
- The ejected mass distribution of type Ia supernovae: A significant rate of non-Chandrasekhar-mass progenitors
- Exploring the Potential Diversity of Early Type Ia Supernova Light Curves
- K2 Observations of SN 2018oh Reveal a Two-Component Rising Light Curve for a Type Ia Supernova
- Optical to X-rays supernovae light curves following shock breakout through a thick wind
- Evryscope science: exploring the potential of all-sky gigapixel-scale telescopes
- Shock breakout theory
- Finding the First Cosmic Explosions I: Pair-Instability Supernovae
- Optical Observations of the Type Ia Supernova 2011fe in M101 for Nearly 500 Days
- Lunar Gravitational-Wave Antenna
- Constraints on Shallow 56Ni from the Early Lightcurves of Type Ia Supernovae
- Seeing the First Supernovae at the Edge of the Universe with JWST
- Tidal Tail Ejection as a Signature of Type~Ia Supernovae from White Dwarf Mergers
- Early light curves for Type Ia supernova explosion models
- Spectra of Type Ia Supernovae from Double Degenerate Mergers
- The peculiar Type Ia supernova iPTF14atg: Chandrasekhar-mass explosion or violent merger?
- The Young and Bright Type Ia Supernova ASASSN-14lp: Discovery, Early-Time Observations, First-Light Time, Distance to NGC 4666, and Progenitor Constraints
- Nickel-Rich Outflows Produced by the Accretion-Induced Collapse of White Dwarfs: Lightcurves and Spectra
- Type Ia supernovae, standardisable candles, and gravity
- Strong Evidence Against A Non-Degenerate Companion in SN 2012cg
- Shock Cooling Emission from Extended Material Revisited
- A Shock Flash Breaking Out of a Dusty Red Supergiant
- Taking the "Un" out of "Unnovae"
- Non-relativistic radiation mediated shock breakouts: II. Bolometric properties of SN shock breakout
- SN 2012fr: Ultraviolet, Optical, and Near-Infrared Light Curves of a Type Ia Supernova Observed Within a Day of Explosion
- Early Observations of the Type Ia Supernova iPTF 16abc: A Case of Interaction with Nearby, Unbound Material and/or Strong Ejecta Mixing
- Constraints on the origin of the first light from SN2014J
- Red vs Blue: Early observations of thermonuclear supernovae reveal two distinct populations?
- Non-relativistic radiation mediated shock breakouts: I. Exact bolometric planar breakout solutions
- Non-relativistic radiation mediated shock breakouts: III. Spectral properties of SN shock breakout
- Determining the Ni distribution of type Ia supernovae from observations within days of explosion
- Early Time Light Curves of Type Ia Supernovae Observed with TESS
- Blasts from the Past: Supernova Shock Breakouts among X-Ray Transients in the XMM-Newton Archive
- Oblique Shock Breakout in Supernovae and Gamma-Ray Bursts: I. Dynamics and Observational Implications
- Strong gravitational lensing and microlensing of supernovae
- The Spectacular Ultraviolet Flash From the Peculiar Type Ia Supernova 2019yvq
- Early observations of the nearby type Ia supernova SN 2015F
- The Los Alamos Supernova Light Curve Project: Computational Methods
- SN 2008D: A Wolf-Rayet explosion through a thick wind
- Time-Varying Potassium in High-Resolution Spectra of the Type Ia Supernova 2014J
- Energy Sources and Light Curves of Macronovae
- Early emission from type Ia supernovae
- Stable nickel production in Type Ia supernovae: A smoking gun for the progenitor mass?
- Early-phase photometry and spectroscopy of transitional Type Ia SN 2012ht: Direct constraint on the rise time
- Infant-phase reddening by surface Fe-peak elements in a normal Type Ia Supernova
- SN 2021zny: an early flux excess combined with late-time oxygen emission suggests a double white dwarf merger event
- Radioactively-Powered Rising Lightcurves of Type Ia Supernovae
- The first 48: Discovery and progenitor constraints on the Type Ia supernova 2013gy
- Analytic Light Curves of Dense CSM Shock Breakout and Cooling
- SN2002es-like Supernovae From Different Viewing Angles
- Bolometric light curves of aspherical shock breakout
- Monte Carlo radiation hydrodynamics: methods, tests and application to supernova Type Ia ejecta
- 2D radiaition-hydrodynamic simulations of supernova shock breakout in bipolar explosions of a blue supergiant progenitor
- Collisionless Shocks and TeV Neutrinos before Supernova Shock Breakout from an Optically Thick Wind
- Shock Emergence in Supernovae: Limiting Cases and Accurate Approximations
- The origin and evolution of the normal Type Ia SN 2018aoz with infant-phase reddening and excess emission
- SN 2011fe: A Laboratory for Testing Models of Type Ia Supernovae
- Prospects of Searching for Type Ia Supernovae with 2.5-m Wide Field Survey Telescope
- Turbulent Mixing on Helium-Accreting White Dwarfs
- Numeric spectral radiation hydrodynamic calculations of supernova shock breakouts
- SN 2021fxy: Mid-Ultraviolet Flux Suppression is a Common Feature of Type Ia Supernovae
- Early supernova emission -- logarithmic corrections to the planar phase
- GW170817: A Neutron Star Merger in a Mass-Transferring Triple System
- Analytic Asymptotic Solution to Spherical Relativistic Shock Breakout
- Observing the earliest moments of supernovae using strong gravitational lenses
- Cocoon shock breakout emission from binary neutron star mergers
- Quantum Algorithm for Radiative Transfer Equation
- An unexplored regime of shock breakout with a distinct spectral signature
- Finding Fast Transients in Real Time Using Novel Light Curve Analysis Algorithm
- First systematic high-precision survey of bright supernovae I. Methodology for identifying early bumps