G-Mode Excitation During the Pre-explosive Simmering of Type Ia Supernovae
arXiv:1105.0936 · doi:10.1088/2041-8205/738/1/L5
Abstract
Prior to the explosive burning of a white dwarf (WD) that makes a Type Ia supernova (SN Ia), the star "simmers" for ~10^3 yrs in a convecting, carbon burning region. I estimate the excitation of g-modes by convection during this phase and explore their possible affect on the WD. As these modes propagate from the core of the WD toward its surface, their amplitudes grow with decreasing density. Once the modes reach nonlinear amplitudes, they break and deposit their energy into a shell of mass ~10^{-4}M_\odot. This raises the surface temperature by 6*10^8 K, which is sufficient to ignite a layer of helium, as is expected to exist for some SN Ia scenarios. This predominantly synthesizes 28Si, 32S, 40Ca, and some 44Ti. These ashes are expanded out with the subsequent explosion up to velocities of ~20,000 km/s, which may explain the high velocity features (HVFs) seen in many SNe Ia. The appearance of HVFs would therefore be a useful discriminant for determining between progenitors, since a flammable helium-rich layer will not be present for accretion from a C/O WD as in a merger scenario. I also discuss the implications of 44Ti production.
Submitted for publication in The Astrophysical Journal Letters, 5 pages, 1 figures
References in corpus (8)
- Double-detonation sub-Chandrasekhar supernovae: can minimum helium shell masses detonate the core?
- Double-detonation sub-Chandrasekhar supernovae: synthetic observables for minimum helium shell mass models
- Unstable Helium Shell Burning on Accreting White Dwarfs
- The Outermost Ejecta of Type Ia Supernovae
- Neutronization During Type Ia Supernova Simmering
- Radioactive Scandium in the Youngest Galactic Supernova Remnant G1.9+0.3
- The Internal Shear of Type Ia Supernova Progenitors During Accretion and Simmering
- Convection during the Late Stages of Simmering in Type Ia Supernovae
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