Spin-Up/Spin-Down models for Type Ia Supernovae
arXiv:1102.4342 · doi:10.1088/2041-8205/738/1/L1
Abstract
In the single degenerate scenario for Type Ia supernova (SNeIa), a white dwarf (WD) must gain a significant amount of matter from a companion star. Because the accreted mass carries angular momentum, the WD is likely to achieve fast spin periods, which can increase the critical mass, , needed for explosion. When is higher than the maximum mass achieved by the WD, the WD must spin down before it can explode. This introduces a delay between the time at which the WD has completed its epoch of mass gain and the time of the explosion. Matter ejected from the binary during mass transfer therefore has a chance to become diffuse, and the explosion occurs in a medium with a density similar to that of typical regions of the interstellar medium. Also, either by the end of the WD's mass increase or else by the time of explosion, the donor may exhaust its stellar envelope and become a WD. This alters, generally diminishing, explosion signatures related to the donor star. Nevertheless, the spin-up/spin-down model is highly predictive. Prior to explosion, progenitors can be super- WDs in either wide binaries with WD companions, or else in cataclysmic variables. These systems can be discovered and studied through wide-field surveys. Post explosion, the spin-up/spin-down model predicts a population of fast-moving WDs, low-mass stars, and even brown dwarfs. In addition, the spin-up/spin-down model provides a paradigm which may be able to explain both the similarities and the diversity observed among SNeIa.
Submitted to ApJ Letters
References in corpus (4)
Cited by in corpus (125)
- Observational clues to the progenitors of Type-Ia supernovae
- The Evolution of Compact Binary Star Systems
- Progenitors of type Ia supernovae
- The delay-time distribution of type-Ia supernovae from Sloan II
- Theoretical uncertainties of the type Ia supernova rate
- On the Progenitors of Type Ia Supernovae
- EVLA Observations Constrain the Environment and Progenitor System of Type Ia Supernova 2011fe
- Type Ia Supernova Explosions in Binary Systems: A Review
- Mass-accreting white dwarfs and type Ia supernovae
- No X-rays from the very nearby Type Ia SN2014J: constraints on its environment
- A Single Degenerate Progenitor Model for Type Ia Supernovae Highly Exceeding the Chandrasekhar Mass Limit
- Inverse Compton X-ray Emission from Supernovae with Compact Progenitors: Application to SN2011fe
- Discovery of 90 Type Ia supernovae among 700,000 Sloan spectra: the Type-Ia supernova rate versus galaxy mass and star-formation rate at redshift ~0.1
- A statistical analysis of circumstellar material in Type Ia supernovae
- Three-dimensional simulations of the interaction between Type Ia supernova ejecta and their main sequence companions
- A Deep Search for Prompt Radio Emission from Thermonuclear Supernovae with the Very Large Array
- Constraints on the progenitor system and the environs of SN 2014J from deep radio observations
- The impact of Type Ia supernova explosions on helium companions in the Chandrasekhar-mass explosion scenario
- A reconnaissance of the possible donor stars to the Kepler supernova
- A systematic study of carbon-oxygen white dwarf mergers: mass combinations for Type Ia supernovae
- Searching for swept-up Hydrogen and Helium in the late-time spectra of 11 nearby Type Ia supernovae
- Hydrogen and helium in the spectra of Type Ia supernovae
- Supernovae Ia in 2019 (review): a rising demand for spherical explosions
- Type Ia Single Degenerate Survivors Must Be Overluminous
- No trace of a single-degenerate companion in late spectra of SNe 2011fe and 2014J
- Direct formation of millisecond pulsars from rotationally delayed accretion-induced collapse of massive white dwarfs
- A High-Resolution Spectroscopic Search for the Remaining Donor for Tycho's Supernova
- Single Degenerate Models for Type Ia Supernovae Progenitor's Evolution and Nucleosythesis Yields
- The fraction of type Ia supernovae exploding inside planetary nebulae (SNIPs)
- Multidimensional Models of Type Ia Supernova Nebular Spectra: Strong Emission Lines from Stripped Companion Gas Rule Out Classic Single Degenerate Systems
- Double-Detonation Models for Type Ia Supernovae: Trigger of Detonation in Companion White Dwarfs and Signatures of Companions' Stripped-off Materials
- Nebular Spectra of 111 Type Ia Supernovae Disfavor Single Degenerate Progenitors
- Kepler and the seven dwarfs: detection of low-level day-timescale periodic photometric variations in white dwarfs
- Three-dimensional hydrodynamical simulations of mass transfer in binary systems by a free wind
- Hunting for the progenitor of SN 1006: High resolution spectroscopic search with the FLAMES instrument
- Final Fates of Rotating White Dwarfs and Their Companions in the Single Degenerate Model of Type Ia Supernovae
- New approaches to SNe Ia progenitors
- A common-envelope wind model for Type Ia supernovae (I): binary evolution and birth rate
- The Absence of Ex-Companions in Type Ia Supernova Remnants
- The explosion of supernova 2011fe in the frame of the core-degenerate scenario
- A Search for a Surviving White Dwarf Companion in SN 1006
- Three-Dimensional Simulation of Double-Detonations in the Double-Degenerate Model for Type Ia Supernovae and Interaction of Ejecta with a Surviving White Dwarf Companion
- On the evolution of rotating accreting white dwarfs and type Ia supernovae
- Variable H Emission in the Nebular Spectra of the Low-Luminosity Type Ia SN2018cqj/ATLAS18qtd
- Surviving companions of Type Ia supernovae: theory and observations
- Astronomical Distance Determination in the Space Age. Secondary distance indicators
- The Radio Light Curve of the Gamma-Ray Nova in V407 Cyg: Thermal Emission from the Ionized Symbiotic Envelope, Devoured from Within by the Nova Blast
- The violent white dwarf merger scenario for the progenitors of type Ia supernovae
- Search for surviving companions in type Ia supernova remnants
- The Deepest Radio Observations of Nearby Type IA Supernovae: Constraining Progenitor Types and Optimizing Future Surveys
- No surviving companion in Kepler's supernova
- Constraining Type Ia supernova explosions and early flux excesses with the Zwicky Transient Factory
- Constraining the Progenitor System of the Type Ia Supernova 2021aefx
- The 2D Distribution of Iron Rich Ejecta in the Remnant of SN 1885 in M31
- No hot and luminous progenitor for Tycho's supernova
- Early ultraviolet signatures from the interaction of Type Ia supernova ejecta with a stellar companion
- The circumstellar matter of supernova 2014J and the core-degenerate scenario
- Final Evolution and Delayed Explosions of Spinning White Dwarfs in Single Degenerate Models for Type Ia Supernovae
- Upper limits on bolometric luminosities of ten type Ia supernova progenitors from Chandra observations
- Upper limits on the luminosity of the progenitor of type Ia supernova SN2014J
- Do SN 2002cx-like and SN Ia-CSM objects share the same origin?
- Subdwarf B stars as possible surviving companions in Type Ia supernova remnants
- Search for Surviving Companions of Progenitors of Young LMC Type Ia Supernova Remnants
- Velocity limits in the thermonuclear supernova ejection scenario for hypervelocity stars and the origin of US 708
- Pre-Explosive Observational Properties of Type Ia Supernovae
- Constraining the spin-down timescale of the white-dwarf progenitors of Type Ia supernovae
- Blue Large-Amplitude Pulsators: the Possible Surviving Companions of Type Ia Supernovae
- On the Nature of the Progenitor of the Type Ia SN2011fe in M101
- Freely Expanding Knots of X-ray Emitting Ejecta in Kepler's Supernova Remnant
- Excluding super-soft X-ray sources as progenitors for four Type Ia supernovae in the Large Magellanic Cloud
- Balmer-Dominated Shocks Exclude Hot Progenitors for Many Type Ia Supernovae
- Wind-Driven Evolution of White Dwarf Binaries to Type Ia Supernovae
- Oxygen-neon rich merger during common envelope evolution
- SN 2011fe: A Laboratory for Testing Models of Type Ia Supernovae
- The X-ray/radio and UV luminosity expected from symbiotic systems as the progenitor of SNe Ia
- Common envelope to explosion delay time of type Ia supernovae
- Evolution of Helium Star - White Dwarf Binaries Leading up to Thermonuclear Supernovae
- An Intermediate Type Ia Supernova Between Normal And Super-Chandrasekhar
- The intermediate nebular phase of SN 2014J: onset of clumping as the source of recombination
- Type Ia Supernovae and their Environment: Theory and Applications to SN 2014J
- Investigation of the Progenitors of the Type Ia Supernovae Associated With the LMC Supernova Remnants 0505-67.9 and 0509-68.7
- No Surviving SN Ia Companion In SNR 0509-67.5: Stellar Population Characterization and Comparison To Models
- Progenitor constraints on the Type Ia supernova SN 2014J from Hubble Space Telescope H and [O III] observations
- Cosmic Type Ia SN rate and constraints on SN Ia progenitors
- Signatures of a surviving helium-star companion in Type Ia supernovae and constraints on the progenitor companion of SN 2011fe
- Common envelope to explosion delay time distribution (CEEDTD) of type Ia supernovae
- Early excess emission in Type Ia supernovae from the interaction between supernova ejecta and their circumstellar wind
- X-rays from Hot Subdwarfs
- Predicted spatial and velocity distributions of ejected companion stars of helium accretion-induced thermonuclear supernovae
- Possible Contribution of Magnetized White Dwarf Binaries to Type Ia Supernova Populations
- Evolution of Main-Sequence-like Surviving Companions in Type Ia Supernova Remnants
- Constraining the Progenitor of the Type Ia Supernova SN 2012cg
- Properties and applications of a predicted population of runaway He-sdO/B stars ejected from single degenerate He-donor SNe
- The Local Group Symbiotic Star Population and its Tenuous Link with Type Ia Supernovae
- The Diffuse Source at the Center of LMC SNR 0509-67.5 is a Background Galaxy at z = 0.031
- A Hydro-Based MCMC Analysis of SNR 0509-67.5 Revealing the Explosion Properties from Fluid Discontinuities Alone
- The first massive compact companion in a wide orbit around a hot subdwarf star
- X-ray Limits on the Progenitor System of the Type Ia Supernova 2017ejb
- Differentially Rotating White Dwarfs I: Regimes of Internal Rotation
- Type Ia supernova ejecta-donor interaction: explosion model comparison
- High-velocity feature as the indicator of the stellar population of Type Ia supernovae
- A possible surviving companion of the SN Ia in the Galactic SNR G272.2-3.2
- Galactic Positrons from Thermonuclear Supernovae
- Possible white dwarf progenitors of type Ia supernovae
- The HST Non-Detection of SN Ia 2011fe 11.5yr After Explosion Further Restricts Single-Degenerate Progenitor Systems
- Type Ia Supernova Models and Progenitor Scenarios
- A closer look at non-interacting He stars as a channel for producing the old population of Type Ia supernovae
- Merging White Dwarfs and Thermonuclear Supernovae
- The core degenerate scenario for the type Ia supernova SN 2020eyj
- Why Are Peculiar Type Ia Supernovae More Likely to Show the Signature of a Single-degenerate Model?
- Supersoft X-Ray Nebulae in the Large Magellanic Cloud
- Linking the properties of accreting white dwarfs with the ionization state of their ambient medium
- Pre-explosion helium shell flash in type Ia supernovae
- Impact of convective overshooting on the single-degenerate model of Type Ia supernovae
- Binary Paths to Type Ia Supernovae Explosions: The Highlights
- Observational Properties of SNe Ia Progenitors Close to the Explosion
- Circumstellar Medium Constraints on the Environment of Two Nearby Type Ia Supernovae: SN 2017cbv and SN 2020nlb
- Host Galaxy Effects in the Susy Model for Supernovae Ia
- A Young Supernova Selection Pipeline For The LSST Era
- X-ray emission from hot subdwarfs with compact companions
- The double detonation of a double degenerate system, from Type Ia supernova explosion to its supernova remnant
- Type Iax supernovae from deflagrations in Chandrasekhar mass white dwarfs
- Hot subdwarfs from the surviving companions of the white dwarf + main-sequence channel of Type Ia supernovae
- The progenitor of a type Ia supernova with a short delay time?
- Rotating strange dwarfs and their indistinguishability from white dwarfs