The fraction of type Ia supernovae exploding inside planetary nebulae (SNIPs)
arXiv:1409.0780 · doi:10.1093/mnras/stu2567
Abstract
Using three independent directions we estimate that the fraction of type Ia supernovae (SNe Ia) exploding inside planetary nebulae (PNe), termed SNIPs,is at least ~20%. Our three directions are as follows. (i) Taking the variable sodium absorption lines in some SN Ia to originate in a massive circumstellar matter (CSM), as has been claimed recently, we use the results of Sternberg et al. (2014) to imply that > ~20% of SN Ia occur inside a PN (or a PN descendant), hence classify them as SNIPs. (ii) We next use results that show that whenever there are hydrogen lines in SN Ia the hydrogen mass in the CSM is large (> 1 M_Sun), hence the explosion is a SNIP. We make the simplest assumption that the probability for explosion is constant in time for up to about 10^5 yrs after the merger of the core with the white dwarf (WD) in the frame of the core-degenerate scenario. This results with at least few x10 of SNe Ia that may have a SNIP origin. (iii) We examine the X-ray morphologies of 13 well-resolved close-by SN remnants (SNRs) Ia and derive a crude upper limit, according to which 10-30% of all SNRs Ia possess opposite ear-like features, which we take as evidence of SNIP origin. Our results, together with several other recent results, lead us to conclude that the two scenarios most contributing to SNe Ia are the core degenerate and the double degenerate scenarios. Together these two account for >95% of all SNe Ia.
17 pages, 2 tables. Accepted to MNRAS
References in corpus (15)
- Faint Thermonuclear Supernovae from AM Canum Venaticorum Binaries
- The Youngest Galactic Supernova Remnant: G1.9+0.3
- Unstable Helium Shell Burning on Accreting White Dwarfs
- Galaxy And Mass Assembly (GAMA): Stellar mass functions by Hubble type
- The ejected mass distribution of type Ia supernovae: A significant rate of non-Chandrasekhar-mass progenitors
- Dust Destruction in Type Ia Supernova Remnants in the Large Magellanic Cloud
- The rate of WD-WD head-on collisions may be as high as the SNe Ia rate
- A planetary nebula around nova V458 Vul undergoing flash ionization
- On the Nature of Type Ia-CSM Supernovae: Optical and Near-Infrared Spectra of SN 2012ca and SN 2013dn
- Constraining the double-degenerate scenario for Type Ia supernovae from merger ejected matter
- Circumstellar Na I and Ca II lines of type Ia supernovae in symbiotic scenario
- Chandra X-Ray Study of Galactic Supernova Remnant G299.2-2.9
- Modeling SNR G1.9+0.3 as a Supernova Inside a Planetary Nebula
- Pre-Explosive Observational Properties of Type Ia Supernovae
- What sodium absorption lines tell us about type Ia supernovae
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- Exploring an Alternative Channel of Evolution Towards SNa Ia Explosion
- Modeling SNR G1.9+0.3 as a Supernova Inside a Planetary Nebula
- The sculpting of rectangular and jet-like morphologies in supernova remnants by anisotropic equatorially-confined progenitor stellar winds
- Spatially Resolved X-ray Spectroscopy of Kepler's Supernova Remnant: Distinct Properties of the Circumstellar Medium and the Ejecta
- Planetary nebulae hosting accreting white dwarfs: A possible solution for the mysterious cut-off of Planetary Nebula Luminosity Function?
- Constraining Type Ia Supernova Asymmetry with the Gamma-Ray Escape Timescale