The envelope mass of red giant donors in Type Ia supernova progenitors
arXiv:1003.2659 · doi:10.1051/0004-6361/200913579
Abstract
We compute the remaining amounts of hydrogen in red giant donors to see whether the conflict between theory and observations can be overcome. By considering the mass-stripping effect from an optically thick wind and the effect of thermally unstable disk, we systematically carried out binary evolution calculation for WD + MS and WD + RG systems. Here, we focus on the evolution of WD + RG systems. We found that some donor stars at the time of the supernova explosion contain little hydrogen-rich material on top of the helium core (as low as 0.017 ), which is smaller than the upper limit to the amount derived from observations of material stripped-off by explosion ejecta. Thus, no hydrogen line is expected in the nebular spectra of these SN Ia. We also derive the distributions of the envelope mass and the core mass of the companions from WD + RG channel at the moment of a supernova explosion by adopting a binary population synthesis approach. We rarely find a RG companion with a very low-mass envelope. Furthermore, our models imply that the remnant of the WD + RG channel emerging after the supernova explosion is a single low-mass white dwarf (0.15 - 0.30 ). The absence of a hydrogen line in nebular spectra of SNe Ia provides support to the proposal that the WD + RG system is the progenitor of SNe Ia.
5 pages, 4 figures, accepted for publication in A&A, by language editor
References in corpus (15)
- Constraining the Type Ia Supernova Progenitor: The Search for Hydrogen in Nebular Spectra
- Young and Massive Binary Progenitors of Type Ia Supernovae and Their Circumstellar Matter
- The impact of type Ia supernovae on main sequence binary companions
- The single-degenerate channel for the progenitor of type Ia supernovae with different metallicities
- On type Ia supernovae and the formation of single low-mass white dwarfs
- Evolving to Type Ia Supernovae with Short Delay Times
- The progenitors of Type Ia supernovae with long delay times
- Supersoft X-ray Light Curve of RS Ophiuchi (2006)
- Ultraviolet Spectroscopy of Supernovae: The First Two Years of Swift Observations
- Companion Stars of Type Ia Supernovae
- On the progenitors of super-Chandrasekhar mass type Ia supernovae
- A comprehensive progenitor model for SNe Ia
- Evolving to type Ia supernovae with long delay time
- Companion Stars of Type Ia supernovae with different metallicities
- An Alternative Symbiotic Channel to Type Ia Supernovae
Cited by in corpus (9)
- Progenitors of type Ia supernovae
- Single-degenerate type Ia supernovae without hydrogen contamination
- Subdwarf B stars as possible surviving companions in Type Ia supernova remnants
- Blue Large-Amplitude Pulsators: the Possible Surviving Companions of Type Ia Supernovae
- Binary population synthesis study on supersoft X-ray phase of single degenerate type Ia supernova progenitors
- The effect of metallicity on the delay-time distribution of type Ia supernova
- The correlation between C/O ratio, metallicity and the initial WD mass for SNe Ia
- The cooling time of white dwarfs produced from type Ia supernovae
- Hot subdwarfs from the surviving companions of the white dwarf + main-sequence channel of Type Ia supernovae