The X-ray/radio and UV luminosity expected from symbiotic systems as the progenitor of SNe Ia
arXiv:1601.07274 · doi:10.1051/0004-6361/201526077
Abstract
We carried out a series of binary stellar evolution calculations, in which the effect of tidally enhanced wind on the evolution of WD + RG systems is incorporated. The WDs increase their mass to the Chandrasekhar mass limit, and then explode as SNe Ia. Based on the binary evolution results, we estimated the X-ray/radio (the excess UV) luminosity from the interactions between supernova ejecta and the CSM (the secondary) via some published standard models. We found that the X-ray flux may be high enough to be detected for a nearby SN Ia from a symbiotic system, while the radio flux is more likely to de detected when the companion is an asymptotic giant branch (AGB) star, and for a first giant branch (FGB) companion, the radio flux is generally lower than the detection limit. For two well observed SNe Ia, 2011fe and 2014J, almost all symbiotic systems are excluded by X-ray observations, but WD + FGB systems may not be ruled out by radio observations. The excess UV luminosity resulting from the collision of supernova ejecta with the RG secondary may be high enough to be detected if the secondary fills its Roche lobe at the moment of supernova explosion. The X-ray/radio emissions are more prevalent in SNe Ia from WD + AGB systems, although SNe Ia from such systems are rare. The UV luminosity from the collision of supernova ejecta to RG secondary is high enough, but only 1 in every few hundred SNe Ia manifests the signal from the collision.
12 pages, 5 figures, accepted for publication in A&A, after language editor
References in corpus (26)
- Circumstellar Emission from Type Ib and Ic Supernovae
- Constraining the Type Ia Supernova Progenitor: The Search for Hydrogen in Nebular Spectra
- Strong Ultraviolet Pulse From a Newborn Type Ia Supernova
- X-Ray Emitting Blast Wave from the Recurrent Nova RS Ophiuchi
- Variable Sodium Absorption in a Low-Extinction Type Ia Supernova
- Young and Massive Binary Progenitors of Type Ia Supernovae and Their Circumstellar Matter
- No X-rays from the very nearby Type Ia SN2014J: constraints on its environment
- The single-degenerate channel for the progenitor of type Ia supernovae with different metallicities
- Constraints on the progenitor system and the environs of SN 2014J from deep radio observations
- A single-degenerate model for the progenitor of the Type Ia supernova 2002ic
- No trace of a single-degenerate companion in late spectra of SNe 2011fe and 2014J
- Companion Stars of Type Ia Supernovae
- On the progenitors of super-Chandrasekhar mass type Ia supernovae
- The fraction of type Ia supernovae exploding inside planetary nebulae (SNIPs)
- The Delay Time Distribution of Type Ia Supernovae and the Single Degenerate Model
- Chandra Observations of Type Ia Supernovae: Upper Limits to the X-ray Flux of SN 2002bo, SN 2002ic, SN 2005gj, and SN 2005ke
- Swift X-Ray Upper Limits on Type Ia Supernova Environments
- Evolving to type Ia supernovae with long delay time
- Time-Varying Potassium in High-Resolution Spectra of the Type Ia Supernova 2014J
- Constraints on single-degenerate Chandrasekhar mass progenitors of Type Iax supernovae
- Revealing progenitors of type Ia supernovae from their light curves and spectra
- Spitzer Observations of the Type Ia Supernova Remnant N103B: Kepler's Older Cousin?
- The circumstellar matter of supernova 2014J and the core-degenerate scenario
- Sodium Absorption Systems toward SN Ia 2014J Originate on Interstellar Scales
- SNe Ia as a cosmological probe
- The Ultraviolet Brightest Type Ia Supernova 2011de
Cited by in corpus (13)
- A common-envelope wind model for Type Ia supernovae (I): binary evolution and birth rate
- 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
- Blue Large-Amplitude Pulsators: the Possible Surviving Companions of Type Ia Supernovae
- Symbiotic stars in the era of modern ground- and space-based surveys
- Cosmic Type Ia SN rate and constraints on SN Ia progenitors
- Shadows of our Former Companions: How the Single-Degenerate Binary Type Ia Supernova Scenario Affects Remnants
- RAMSES II - RAMan Search for Extragalactic Symbiotic Stars. Project concept, commissioning, and early results from the science verification phase
- The effect of aspherical stellar wind of giant stars on the symbiotic channel of type Ia supernovae
- The progenitors of Type Ia supernovae with asymptotic giant branch donors
- Producing type Ia supernovae from hybrid CONe white dwarfs with main-sequence binary companions at low metallicity of Z = 0.0001
- Circumstellar Medium Constraints on the Environment of Two Nearby Type Ia Supernovae: SN 2017cbv and SN 2020nlb
- X-ray luminous late-type giants: an overlooked population contributing to the Galactic ridge iron line emission