The first binary star evolution model producing a Chandrasekhar mass white dwarf
arXiv:astro-ph/0402286 · doi:10.1051/0004-6361:20034607
Abstract
Today, Type Ia supernovae are essential tools for cosmology, and recognized as major contributors to the chemical evolution of galaxies. The construction of detailed supernova progenitor models, however, was so far prevented by various physical and numerical difficulties in simulating binary systems with an accreting white dwarf component, e.g., unstable helium shell burning which may cause significant expansion and mass loss. Here, we present the first binary evolution calculation which models both stellar components and the binary interaction simultaneously, and where the white dwarf mass grows up to the Chandrasekhar limit by mass accretion. Our model starts with a 1.6 Msun helium star and a 1.0 Msun CO white dwarf in a 0.124 day orbit. Thermally unstable mass transfer starts when the CO core of the helium star reaches 0.53 Msun, with mass transfer rates of 1...8 times 10^{-6} Msun/yr. The white dwarf burns the accreted helium steadily until the white dwarf mass has reached ~ 1.3 Msun and weak thermal pulses follow until carbon ignites in the center when the white dwarf reaches 1.37 Msun. Although the supernova production rate through this channel is not well known, and this channel can not be the only one as its progenitor life time is rather short (~ 10^7 - 10^8 yr), our results indicate that helium star plus white dwarf systems form a reliable route for producing Type Ia supernovae.
4 pages, 5 figures
References in corpus (2)
Cited by in corpus (61)
- The Evolution of Compact Binary Star Systems
- Progenitors of type Ia supernovae
- Constraints on the Progenitor System of the Type Ia Supernova SN 2011fe/PTF11kly
- The Luminous and Carbon-Rich Supernova 2006gz: A Double Degenerate Merger?
- Three Hypervelocity White Dwarfs in Gaia DR2: Evidence for Dynamically Driven Double-Degenerate Double-Detonation Type Ia Supernovae
- On the evolution of rapidly rotating massive white dwarfs towards supernovae or collapses
- Helium star donor channel for the progenitors of type Ia supernovae
- Evidence for Two Distinct Populations of Type Ia Supernovae
- Delay Times and Rates for Type Ia Supernovae and Thermonuclear Explosions from Double-detonation Sub-Chandrasekhar Mass Models
- Type Ia Supernova Explosions in Binary Systems: A Review
- Presupernova evolution of accreting white dwarfs with rotation
- Mass accumulation efficiency in helium shell flashes for various white dwarf masses
- Evolution towards and beyond accretion-induced collapse of massive white dwarfs and formation of millisecond pulsars
- Mass-accreting white dwarfs and type Ia supernovae
- No X-rays from the very nearby Type Ia SN2014J: constraints on its environment
- A progenitor binary and an ejected mass donor remnant of faint type Ia supernovae
- The Evolution of Compact Binary Star Systems
- He-Accreting WDs: accretion regimes and final outcomes
- Evolving to Type Ia Supernovae with Short Delay Times
- The expanding bipolar shell of the helium nova V445 Puppis
- Constraints on the Progenitor System of the Type Ia Supernova 2014J from Pre-Explosion Hubble Space Telescope Imaging
- Companion stars of Type Ia supernovae and hypervelocity stars
- Progenitors of Type Ia Supernovae: Binary Stars with White Dwarf Companions
- Asymmetric Explosion of Type Ia Supernovae as Seen from Near Infrared Observations
- On the progenitors of super-Chandrasekhar mass type Ia supernovae
- He-accreting carbon-oxygen white dwarfs and type Ia supernovae
- Evidence for Sub-Chandrasekhar Type Ia Supernovae from Stellar Abundances in Dwarf Galaxies
- Multidimensional Models of Type Ia Supernova Nebular Spectra: Strong Emission Lines from Stripped Companion Gas Rule Out Classic Single Degenerate Systems
- Effects of rotation on the helium burning shell source in accreting white dwarfs
- Nebular Spectra of 111 Type Ia Supernovae Disfavor Single Degenerate Progenitors
- NLTE Model Atmosphere Analysis of the LMC Supersoft X-ray Source CAL 83
- Carbon Shell or Core Ignitions in White Dwarfs Accreting from Helium Stars
- The double-degenerate model for the progenitors of type Ia supernovae
- The helium star donor channel for the progenitors of type Ia supernovae with different metallicities
- A radio-detected Type Ia supernova with helium-rich circumstellar material
- Accretion-Induced Collapse From Helium Star + White Dwarf Binaries
- Helium star evolutionary channel to super-Chandrasekhar mass type Ia supernovae
- Constraints on single-degenerate Chandrasekhar mass progenitors of Type Iax supernovae
- Models for the evolution of close binaries with He-Star and WD components towards Type Ia supernova explosions
- A Close Look at the Population of Supersoft and Quasi-Soft X-Ray Sources Observed in M31 with XMM-Newton
- Probing thermonuclear supernova explosions with neutrinos
- The fastest stars in the Galaxy
- Super-Eddington wind scenario for the progenitors of type Ia supernovae: Accreting He-rich matter onto white dwarfs
- Helium ignition in rotating magnetized CO white dwarfs leading to fast and faint rather than classical type Ia supernovae
- Detection of Circumstellar Helium in Type Iax Progenitor Systems
- The Evolution of Helium Star Plus Carbon-Oxygen White Dwarf Binary Systems and Implications for Diverse Stellar Transients and Hypervelocity Stars
- Formation of black widows through ultra-compact X-ray binaries with He star companions
- The delay time distribution of supernovae from integral-field spectroscopy of nearby galaxies
- The ignition of thermonuclear flames in Type Ia supernovae
- The Whisper of a Whimper of a Bang: 2400 Days of the Type Ia SN 2011fe Reveals the Decay of Fe
- Evolution of Helium Star - White Dwarf Binaries Leading up to Thermonuclear Supernovae
- Galactic Chemical Evolution Models Favor an Extended Type Ia Supernova Delay-Time Distribution
- Late-Onset Circumstellar Medium Interactions are Rare: An Unbiased GALEX View of Type Ia Supernovae
- The formation of type Ia supernovae from carbon-oxygen-silicon white dwarfs
- Optical and Infrared Photometry of the Nearby SN 2017cbv
- Circumstellar properties of Type Ia supernovae from the helium star donor channel
- A helium-burning white dwarf binary as a supersoft X-ray source
- WD + He star systems as the progenitors of Type Ia supernovae and their surviving companion stars
- Effects of Rotationally-Induced Mixing in Compact Binary Systems with Low-Mass Secondaries and in Single Solar-Type Stars
- Evolution of binaries containing a hot subdwarf and a white dwarf to double white dwarfs, and double detonation supernovae with hypervelocity runaway stars
- Pre-Explosion Properties of Helium Star Donors to Thermonuclear Supernovae