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首页> 外文期刊>The Astrophysical journal >TYPE Ia SUPERNOVAE: CAN CORIOLIS FORCE BREAK THE SYMMETRY OF THE GRAVITATIONAL CONFINED DETONATION EXPLOSION MECHANISM?
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TYPE Ia SUPERNOVAE: CAN CORIOLIS FORCE BREAK THE SYMMETRY OF THE GRAVITATIONAL CONFINED DETONATION EXPLOSION MECHANISM?

机译:Ia型超新星:科里奥里斯人能打破重力引爆爆炸机理的对称性吗?

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Currently the number of models aimed at explaining the phenomena of type Ia supernovae is high and distinguishing between them is a must. In this work we explore the influence of rotation on the evolution of the nuclear flame that drives the explosion in the so-called gravitational confined detonation models. Assuming that the flame starts in a pointlike region slightly above the center of the white dwarf (WD) and adding a moderate amount of angular velocity to the star we follow the evolution of the deflagration using a smoothed particle hydrodynamics code. We find that the results are very dependent on the angle between the rotational axis and the line connecting the initial bubble of burned material with the center of the WD at the moment of ignition. The impact of rotation is larger for angles close to 90°?because the Coriolis force on a floating element of fluid is maximum and its principal effect is to break the symmetry of the deflagration. Such symmetry breaking weakens the convergence of the nuclear flame at the antipodes of the initial ignition volume, changing the environmental conditions around the convergence region with respect to non-rotating models. These changes seem to disfavor the emergence of a detonation in the compressed volume at the antipodes and may compromise the viability of the so-called gravitational confined detonation mechanism.
机译:目前,用于解释Ia型超新星现象的模型数量很多,必须加以区分。在这项工作中,我们探讨了旋转对所谓引力限制爆炸模型中驱动爆炸的核火焰演化的影响。假设火焰始于白矮星(WD)中心稍上方的点状区域,并向恒星增加适量的角速度,我们使用平滑的粒子流体动力学代码跟踪爆燃的演变。我们发现结果非常依赖于旋转轴与在点火时刻连接燃烧材料的初始气泡与WD中心的线之间的角度。角度接近90°时旋转的影响更大,这是因为在流体的浮动元件上的科里奥利力最大,其主要作用是破坏爆燃的对称性。这种对称破坏削弱了核火焰在初始点火体积的对映体处的收敛,从而相对于非旋转模型改变了收敛区域周围的环境条件。这些变化似乎不利于对映体压缩体积中的爆轰的出现,并且可能损害所谓的重力限制爆轰机制的可行性。

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