Early X-ray emission from Type Ia supernovae originating from symbiotic progenitors or recurrent novae
arXiv:1401.7332 · doi:10.1093/mnras/stu1249
Abstract
One of the key observables for determining the progenitor nature of Type Ia supernovae is provided by their immediate circumstellar medium, which according to several models should be shaped by the progenitor binary system. So far, X-ray and radio observations indicate that the surroundings are very tenuous, producing severe upper-limits on the mass loss from winds of the progenitors. In this study, we perform numerical hydro-dynamical simulations of the interaction of the SN ejecta with circumstellar structures formed by possible mass outflows from the progenitor systems and we estimate numerically the expected numerical X-ray luminosity. We consider two kinds of circumstellar structures: a) A circumstellar medium formed by the donor star's stellar wind, in case of a symbiotic binary progenitor system; b) A circumstellar medium shaped by the interaction of the slow wind of the donor star with consecutive nova outbursts for the case of a symbiotic recurrent nova progenitor system. For the hydro-simulations we used well-known Type Ia supernova explosion models, as well as an approximation based on a power law model for the density structure of the outer ejecta. We confirm the strict upper limits on stellar wind mass loss, provided by simplified interpretations of X-ray upper limits of Type Ia supernovae. However, we show that supernova explosions going off in the cavities created by repeated nova explosions, provide a possible explanation for the lack of X-ray emission from supernovae originating from symbiotic binaries. Moreover, the velocity structure of circumstellar medium, shaped by a series of nova explosion matches well with the Na absorption features seen in absorption toward several Type Ia supernovae.
11 pages, 12 figures, submitted to MNRAS
References in corpus (9)
- Circumstellar Emission from Type Ib and Ic Supernovae
- 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
- Supersoft X-ray Light Curve of RS Ophiuchi (2006)
- A Search for the Progenitors of Two Type-Ia Supernovae in NGC 1316
- Novae as a Mechanism for Producing Cavities around the Progenitors of SN 2002ic and Other SNe Ia
- 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
Cited by in corpus (11)
- Modelling the circumstellar medium in RS Ophiuchi and its link to Type Ia supernovae
- Constraints on single-degenerate Chandrasekhar mass progenitors of Type Iax supernovae
- Wind Roche Lobe Overflow as a way to make type Ia supernova from the widest symbiotic systems
- Constraining magnetic field amplification in SN shocks using radio observations of SNe 2011fe and 2014J
- The X-ray/radio and UV luminosity expected from symbiotic systems as the progenitor of SNe Ia
- Chandra X-ray Constraints on the Candidate Ca-rich Gap Transient SN 2016hnk
- RAMSES II - RAMan Search for Extragalactic Symbiotic Stars. Project concept, commissioning, and early results from the science verification phase
- Thirty Years of Radio Observations of Type Ia SN 1972E and SN 1895B: Constraints on Circumstellar Shells
- A diverse, overlooked population of Type Ia supernovae exhibiting mid-infrared signatures of delayed circumstellar interaction
- Outside the Wall: Hydrodynamics of Type I Supernovae Interacting with a Partially Swept-Up Circumstellar Medium
- Circumstellar Medium Constraints on the Environment of Two Nearby Type Ia Supernovae: SN 2017cbv and SN 2020nlb