论文标题

核心爆发超新星模拟,核合成网络减少

Core-collapse supernova simulations with reduced nucleosynthesis networks

论文作者

Navó, Gerard, Reichert, Moritz, Obergaulinger, Martin, Arcones, Almudena

论文摘要

我们提出了核心偏离的超新星模拟,包括影响爆炸动力学和核合成的核反应网络。不同的组成处理可以通过修饰核子的数量以及该区域的中微子畅通,从而导致冲击附近中微子加热的变化。这会降低冲击外的RAM压力,并可以更容易扩展。崩溃期间核反应释放的能量也减慢了积聚,并有助于减震。此外,震后物质中的核能产生最高可产生20美元\%$的能量爆炸。核合成由于爆炸的动态演化而受到影响。我们的结果表明,核反应产生的能量产生有助于维持原始恒星附近的晚期流出,从而综合了更多富含中子的物种。此外,我们表明,使用原位和前坐标反应网络计算出的弹出之间存在系统的差异。这些差异源于在流体动力模拟中不断发展组成或用拉格朗日示踪剂颗粒计算出组成的内在特征。某些CA,Ti,Cr和Fe同位素的质量分数在后处理计算中始终生产不足,从而导致不同的核合成路径。我们的结果表明,较大的原位核反应网络对于能量产生,中微子加热和更准确的喷射组成的现实反馈很重要。

We present core-collapse supernova simulations including nuclear reaction networks that impact explosion dynamics and nucleosynthesis. The different composition treatment can lead to changes in the neutrino heating in the vicinity of the shock by modifying the number of nucleons and thus the neutrino-opacity of the region. This reduces the ram pressure outside the shock and allows an easier expansion. The energy released by the nuclear reactions during collapse also slows down the accretion and aids the shock expansion. In addition, nuclear energy generation in the postshocked matter produces up to $20\%$ more energetic explosions. Nucleosynthesis is affected due to the different dynamic evolution of the explosion. Our results indicate that the energy generation from nuclear reactions helps to sustain late outflows from the vicinity of the proto-neutron star, synthesizing more neutron-rich species. Furthermore, we show that there are systematic discrepancies between the ejecta calculated with in-situ and ex-situ reaction networks. These differences stem from the intrinsic characteristics of evolving the composition in hydrodynamic simulations or calculating it with Lagrangian tracer particles. The mass fractions of some Ca, Ti, Cr, and Fe isotopes are consistently underproduced in postprocessing calculations, leading to different nucleosynthesis paths. Our results suggest that large in-situ nuclear reaction networks are important for a realistic feedback of the energy generation, the neutrino heating, and a more accurate ejecta composition.

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