论文标题
中微子成对产生速率在核心折叠超新星中的影响
Impact of neutrino pair-production rates in Core-Collapse Supernovae
论文作者
论文摘要
在本文中,我们仔细研究了中微子成对产生对核心偏曲超新星的影响,该核心偏离超新星通过球形对称的,一般性的 - 相关模拟,对两个不同的巨大恒星祖细胞具有能量依赖性中微子的转运。我们探讨了潜在的微物理学的影响和后果,以及在辐射传输算法上对超新星进化,中微子信号特性和爆炸动力学的实现。我们考虑了在超新星,电子旋转式歼灭以及核子核子核子Bremsstrahlung中发现的两个显性中微子成对生产过程,并结合了简化和完整的辐射运输算法过程中的过程。我们发现,简化处方的使用对中微子信号在10 \%级别以及超新星动力学的可能影响,因为我们显示的是96m $ _ \ odot $祖先的情况。我们还表明,核子核子Bremsstrahlung相互作用的选择也可以对中微子信号产生定量影响。建议对核心崩溃的精确模拟进行最先进的微物理学的自洽处理,但是,此处探索的简化处理在计算上的要求较低,并且导致质量上相似的进化。
In this paper, we present a careful study on the impact of neutrino pair-production on core-collapse supernovae via spherically-symmetric, general-relativistic simulations of two different massive star progenitors with energy-dependent neutrino transport. We explore the impact and consequences of both the underlying microphysics and the implementation in the radiation transport algorithms on the supernova evolution, neutrino signal properties, and the explosion dynamics. We consider the two dominant neutrino pair-production processes found in supernovae, electron-positron annihilation as well as nucleon-nucleon bremsstrahlung in combination with both a simplified and a complete treatment of the processes in the radiation transport algorithms. We find that the use of the simplified prescription quantitatively impacts the neutrino signal at the 10\% level and potentially the supernova dynamics, as we show for the case of a 9.6M$_\odot$ progenitor. We also show that the choice of nucleon-nucleon bremsstrahlung interaction can also have a quantitative impact on the neutrino signal. A self-consistent treatment with state-of-the-art microphysics is suggested for precision simulations of core collapse, however the simplified treatment explored here is both computationally less demanding and results in a qualitatively similar evolution.