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FLAME EVOLUTION DURING TYPE Ia SUPERNOVAE AND THE DEFLAGRATION PHASE IN THE GRAVITATIONALLY CONFINED DETONATION SCENARIO

机译:Ia型超新星爆发过程中的火焰演化和引力局限爆轰场景中的失相阶段

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摘要

We develop an improved method for tracking the nuclear flame during the deflagration phase of a Type la supernova and apply it in a study of the variation in outcomes expected from the gravitationally confined detonation (GCD) paradigm. A simplified three-stage burning model and a nonstatic ash state are integrated with an artificially thickened advection-diffusion-reaction (ADR) flame front in order to provide an accurate but highly efficient representation of the energy release and electron capture in and after the unresolvable flame. We demonstrate that neither our ADR nor our energy release methods generate significant acoustic noise, as has been a problem with previous ADR-based schemes. We proceed to model aspects of the deflagration, particularly the role of buoyancy of the hot ash, and find that our methods are reasonably well behaved with respect to numerical resolution. We show that if a detonation occurs in material swept up by the material ejected by the first rising bubble but gravitationally confined to the white dwarf (WD) surface (the GCD paradigm), the density structure of the WD at detonation is systematically correlated with the distance of the deflagration ignition point from the center of the star. Coupled to a suitably stochastic ignition process, this correlation may provide a plausible explanation for the variety of nickel masses seen in Type Ia supernovae.
机译:我们开发了一种改进的方法,用于在la型超新星的爆燃阶段跟踪核火焰,并将其应用于对重力限制爆炸(GCD)范式预期的结果变化的研究。简化的三阶段燃烧模型和非静态灰烬状态与人工加厚的对流扩散反应(ADR)火焰前沿相结合,以提供精确而高效的能量表示和不可分辨的能量释放和电子俘获火焰。我们证明,与以前的基于ADR的方案相比,我们的ADR和能量释放方法都不会产生明显的声音噪声。我们着手对爆燃的各个方面进行建模,尤其是对热灰的浮力的作用,并发现我们的方法在数值分辨率方面表现良好。我们表明,如果在由第一个上升的气泡喷出的物质扫过的物质中发生爆轰,但在重力作用下被限制在白矮星(WD)表面(GCD范式),则爆轰时WD的密度结构与爆轰的系统相关。爆燃点火点距恒星中心的距离。结合适当的随机点火过程,这种相关性可以为Ia型超新星中所见的各种镍质量提供合理的解释。

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