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首页> 外文期刊>The Astrophysical journal >Three-Dimensional Simulations of the Deflagration Phase of the Gravitationally Confined Detonation Model of Type Ia Supernovae
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Three-Dimensional Simulations of the Deflagration Phase of the Gravitationally Confined Detonation Model of Type Ia Supernovae

机译:Ia型超新星重力引爆模型爆燃阶段的三维模拟

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摘要

We report the results of a series of three-dimensional (3D) simulations of the deflagration phase of the gravitationally confined detonation mechanism for Type Ia supernovae. In this mechanism, ignition occurs at one or several off-center points, resulting in a burning bubble of hot ash that rises rapidly, breaks through the surface of the star, and collides at a point opposite the breakout on the stellar surface. We find that detonation conditions are robustly reached in our 3D simulations for a range of initial conditions and resolutions. Detonation conditions are achieved as the result of an inwardly directed jet that is produced by the compression of unburnt surface material when the surface flow collides with itself. A high-velocity outwardly directed jet is also produced. The initial conditions explored in this paper lead to conditions at detonation that can be expected to produce large amounts of 56Ni and small amounts of intermediate-mass elements. These particular simulations are therefore relevant only to high-luminosity Type Ia supernovae. Recent observations of Type Ia supernovae imply a compositional structure that is qualitatively consistent with that expected from these simulations.
机译:我们报告了Ia型超新星引力局限爆轰机制的爆燃阶段的一系列三维(3D)模拟结果。在这种机制下,点火发生在一个或几个偏心点,导致燃烧的热灰烬气泡迅速上升,穿透恒星表面,并在与恒星表面上的爆发点相对的位置碰撞。我们发现,在一系列初始条件和分辨率下,我们的3D模拟能够可靠地达到爆轰条件。当表面流与其自身碰撞时,由于未压缩的表面材料被压缩而产​​生的向内射流,从而达到了爆轰条件。还产生了高速的向外射流。本文探讨的初始条件会导致在爆炸条件下产生大量的56Ni和少量的中间质量元素。因此,这些特定的模拟仅与高亮度Ia型超新星有关。对Ia型超新星的最新观察表明,其组成结构在质量上与这些模拟预期的一致。

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