Diffuse Gas in Galaxies Sheds New Light on the Origin of Type Ia Supernovae
arXiv:1401.1344 · doi:10.1093/mnras/stu907
Abstract
We measure the strength of HeII4686 nebular emission in passively evolving ("retired") galaxies, aiming to constrain their populations of hot accreting white dwarfs (WDs) in the context of the single degenerate (SD) scenario of Type Ia supernovae (SNe Ia). In the SD scenario, as a WD burns hydrogen-rich material accreted from a companion star, it becomes a powerful source of ionizing UV emission. If significant populations of such sources exist in galaxies, strong emission in the recombination lines of HeII should be expected from the interstellar medium. To explore this conjecture, we select from the Sloan Digital Sky Survey ~11 500 emission line galaxies with stellar ages >1 Gyr showing no signs of AGN activity and co-add their spectra in bins of stellar population age. For the first time, we detect HeII4686 nebular emission in retired galaxies and find it to be significantly weaker than that expected in the SD scenario, especially in the youngest age bin (1-4 Gyr) where the SN Ia rate is the highest. Instead, the strength of the observed HeII4686 nebular emission is consistent with post-asymptotic giant branch stars being the sole ionizing source in all age bins. These results limit populations of accreting WDs with photospheric temperatures () in the range ~(1.5-6) K to the level at which they can account for no more than ~5-10% of the observed SN Ia rate. Conversely, should all WD progenitors of SN Ia go through the phase of steady nuclear burning with ~(1.5-6) K, they do not increase their mass by more than ~0.03 in this regime.
Accepted for publication in MNRAS, 19 pages, 18 figures. References added, minor text updates, figures added to Appendix A
References in corpus (2)
Cited by in corpus (25)
- Observational clues to the progenitors of Type-Ia supernovae
- The Evolution of Compact Binary Star Systems
- On the Progenitors of Type Ia Supernovae
- Type Ia Supernova Explosions in Binary Systems: A Review
- Mass-accreting white dwarfs and type Ia supernovae
- MUSE observations of M87: radial gradients for the stellar initial-mass function and the abundance of Sodium
- A unified explanation for the supernova rate-galaxy mass dependency based on supernovae discovered in Sloan galaxy spectra
- A common-envelope wind model for Type Ia supernovae (I): binary evolution and birth rate
- i-Process Contribution of Rapidly Accreting White Dwarfs to the Solar Composition of First-Peak Neutron-Capture Elements
- Progenitor constraints on the Type-Ia supernova SN2011fe from pre-explosion Hubble Space Telescope HeII narrow-band observations
- Time-Varying Potassium in High-Resolution Spectra of the Type Ia Supernova 2014J
- Surviving companions of Type Ia supernovae: theory and observations
- Population synthesis of accreting white dwarfs: II. X-ray and UV emission
- Diffuse Gas in Retired Galaxies: Nebular Emission Templates and Constraints on the Sources of Ionization
- Next generation population synthesis of accreting white dwarfs: I. Hybrid calculations using BSE + MESA
- Excluding super-soft X-ray sources as progenitors for four Type Ia supernovae in the Large Magellanic Cloud
- Balmer-Dominated Shocks Exclude Hot Progenitors for Many Type Ia Supernovae
- HI galaxies with little star formation: an abundance of LIERs
- Normal type Ia supernovae from disruptions of hybrid He-CO white-dwarfs by CO white-dwarfs
- Progenitor constraints on the Type Ia supernova SN 2014J from Hubble Space Telescope H and [O III] observations
- Rates and delay times of Type Ia supernovae in the helium-enriched main-sequence donor scenario
- Populations of super-soft X-ray sources in galaxies of different morphological types
- Constraining the role of novae as progenitors of Type Ia Supernovae
- The globular cluster system of NGC 1316 IV. Nature of the star cluster complex SH2
- LIN 358: A symbiotic binary accreting above the steady hydrogen fusion limit