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首页> 外文期刊>The Astrophysical Journal. Letters >STOCHASTICITY AND EFFICIENCY IN SIMPLIFIED MODELS OF CORE-COLLAPSE SUPERNOVA EXPLOSIONS
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STOCHASTICITY AND EFFICIENCY IN SIMPLIFIED MODELS OF CORE-COLLAPSE SUPERNOVA EXPLOSIONS

机译:核崩解超新星爆炸简化模型的随机性和效率

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摘要

We present an initial report on 160 simulations of a highly simplified model of the post-bounce core-collapse supernova environment in three spatial dimensions (3D). We set different values of a parameter characterizing the impact of nuclear dissociation at the stalled shock in order to regulate the post-shock fluid velocity, thereby determining the relative importance of convection and the stationary accretion shock instability (SASI). While our convection-dominated runs comport with the paradigmatic notion of a "critical neutrino luminosity" for explosion at a given mass accretion rate (albeit with a nontrivial spread in explosion times just above threshold), the outcomes of our SASI-dominated runs are much more stochastic: a sharp threshold critical luminosity is "smeared out" into a rising probability of explosion over a similar to 20% range of luminosity. We also find that the SASI-dominated models are able to explode with 3-4 times less efficient neutrino heating, indicating that progenitor properties, and fluid and neutrino microphysics, conducive to the SASI would make the neutrino-driven explosion mechanism more robust.
机译:我们提供关于三个空间维度(3D)的反弹后核心崩溃超新星环境的高度简化模型的160个模拟的初步报告。为了调节休克后的流体速度,我们设定了表征核解离在失速冲击中的影响的参数的不同值,从而确定了对流和平稳增生冲击不稳定性(SASI)的相对重要性。尽管以对流为主的运行符合“临界中微子发光度”在给定质量增长速率下的爆炸性范式(尽管爆炸时间的平凡分布略高于阈值),但以SASI为主的运行的结果却很多更加随机:在接近20%的亮度范围内,尖锐的临界临界发光度被“抹去”为爆炸的可能性增加。我们还发现,以SASI为主的模型能够以中微子加热效率降低3-4倍进行爆炸,这表明有利于SASI的祖先性质以及流体和中微子的微观物理学将使中微子驱动的爆炸机制更加牢固。

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