English

Thermonuclear and Electron-Capture Supernovae from Stripped-Envelope Stars

High Energy Astrophysical Phenomena 2022-12-14 v2 Solar and Stellar Astrophysics

Abstract

(abridged) When stripped from their hydrogen-rich envelopes, stars with initial masses between \sim7 and 11 M_\odot develop massive degenerate cores and collapse. Depending on the final structure and composition, the outcome can range from a thermonuclear explosion, to the formation of a neutron star in an electron-capture supernova (ECSN). It has been recently demonstrated that stars in this mass range may initiate explosive oxygen burning when their central densities are still below ρc109.6\rho_{\rm c} \lesssim 10^{9.6} g cm3^{-3}. This makes them interesting candidates for type Ia supernovae -- which we call (C)ONe SNe Ia -- and might have broader implications for the formation of neutron stars via ECSNe. Here, we model the evolution of 252 helium stars with initial masses in the 0.83.50.8-3.5 M_\odot range, and metallicities between Z=104Z=10^{-4} and 0.020.02. We use these models to constrain the central densities, compositions and envelope masses at the time of explosive oxygen ignition. We further investigate the sensitivity of these properties to mass loss rate assumptions using additional models with varying wind efficiencies. We find that helium stars with masses between \sim1.8 and 2.7 M_\odot evolve onto 1.351.371.35-1.37 M_\odot (C)ONe cores that initiate explosive burning at central densities between log10(ρc)9.3\rm \log_{10}(\rho_c)\sim 9.3 and 9.6. We constrain the amount of residual carbon retained after core carbon burning, and conclude that it plays a critical role in determining the final outcome: Chandrasekhar-mass degenerate cores that retain more than 0.005\sim 0.005 M_\odot of carbon result in (C)ONe SNe Ia, while those with lower carbon mass become ECSNe. We find that (C)ONe SNe Ia are more likely to occur at high metallicities, whereas at low metallicities ECSNe dominate.

Keywords

Cite

@article{arxiv.2201.00871,
  title  = {Thermonuclear and Electron-Capture Supernovae from Stripped-Envelope Stars},
  author = {Savvas Chanlaridis and John Antoniadis and David R. Aguilera-Dena and Götz Gräfener and Norbert Langer and Nikolaos Stergioulas},
  journal= {arXiv preprint arXiv:2201.00871},
  year   = {2022}
}

Comments

Accepted in Astronomy & Astrophysics; v2 matches the accepted version. Comments are welcome