Local Ignition in Carbon/Oxygen White Dwarfs -- I: One-zone Ignition and Spherical Shock Ignition of Detonations
arXiv:astro-ph/0510367 · doi:10.1086/500638
Abstract
The details of ignition of Type Ia supernovae remain fuzzy, despite the importance of this input for any large-scale model of the final explosion. Here, we begin a process of understanding the ignition of these hotspots by examining the burning of one zone of material, and then investigate the ignition of a detonation due to rapid heating at single point. We numerically measure the ignition delay time for onset of burning in mixtures of degenerate material and provide fitting formula for conditions of relevance in the Type Ia problem. Using the neon abundance as a proxy for the white dwarf metallicity, we then find that ignition times can decrease by ~20% with addition of even 5% of neon by mass. When temperature fluctuations that successfully kindle a region are very rare, such a reduction in ignition time can increase the probability of ignition by orders of magnitude. If the neon comes largely at the expense of carbon, a similar increase in the ignition time can occur. We then consider the ignition of a detonation by an explosive energy input in one localized zone, eg a Sedov blast wave leading to a shock-ignited detonation. Building on previous work on curved detonations, we find that surprisingly large inputs of energy are required to successfully launch a detonation, leading to required matchheads of ~4500 detonation thicknesses - tens of centimeters to hundreds of meters - which is orders of magnitude larger than naive considerations might suggest. This is a very difficult constraint to meet for some pictures of a deflagration-to-detonation transition, such as a Zel'dovich gradient mechanism ignition in the distributed burning regime.
29 pages; accepted to ApJ. Comments welcome at http://www.cita.utoronto.ca/~ljdursi/thisweek/ . Updated version addressing referee comments
References in corpus (11)
- Type Ia Supernova Explosion: Gravitationally Confined Detonation
- On Validating an Astrophysical Simulation Code
- Carbon Ignition in Type Ia Supernovae: An Analytic Model
- Deflagrations and Detonations in Thermonuclear Supernovae
- Three-dimensional Numerical Simulations of Rayleigh-Taylor Unstable Flames in Type Ia Supernovae
- Carbon Ignition in Type Ia Supernovae: II. A Three-Dimensional Numerical Model
- Direct Numerical Simulations of Type Ia Supernovae Flames II: The Rayleigh-Taylor Instability
- Type Ia Supernova models arising from different distributions of igniting points
- The Response of Model and Astrophysical Thermonuclear Flames to Curvature and Stretch
- The Physics of Flames in Type Ia Supernovae
- Thermonuclear Supernovae: Is Deflagration Triggered by Floating Bubbles?
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