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首页> 外文期刊>The Astrophysical journal >SENSITIVITY OF p-PROCESS NUCLEOSYNTHESIS TO NUCLEAR REACTION RATES IN A 25 solar mass SUPERNOVA MODEL
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SENSITIVITY OF p-PROCESS NUCLEOSYNTHESIS TO NUCLEAR REACTION RATES IN A 25 solar mass SUPERNOVA MODEL

机译:25太阳质量超新星模型中p过程核合成对核反应速率的敏感性

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The astrophysical p-process, which is responsible for the origin of the proton-rich stable nuclei heavier than iron, was investigated using a full nuclear reaction network for a Type Ⅱ supernova explosion when the shock front passes through the O/Ne layer. Calculations were performed with a multilayer model adopting the seed of a preexplosion evolution of a 25 solar mass star. The reaction flux was calculated to determine the main reaction path and branching points responsible for synthesizing the proton-rich nuclei. In order to investigate the impact of nuclear reaction rates on the predicted p-process abundances, extensive simulations with different sets of collectively and individually modified neutron-, proton-, and α-caprure and photodisintegration rates have been performed. These results are not only relevant to explore the nuclear-physics-related uncertainties in p-process calculations but are also important for identifying the strategy and planning of future experiments.
机译:利用全核反应网络,当冲击波前缘穿过O / Ne层时,利用Ⅱ型超新星爆炸的全核反应网络研究了天文学的p过程,该过程是富质子比铁重的稳定核的起源。使用采用25个太阳质量恒星的爆炸前演化种子的多层模型进行计算。计算反应通量以确定负责合成富含质子的核的主要反应路径和支化点。为了研究核反应速率对预测的p-过程丰度的影响,已经进行了广泛的模拟,其中使用了不同的集体和个别修改的中子,质子和α电容和光致分解速率的集合。这些结果不仅对于探索p过程计算中与核物理有关的不确定性有关,而且对于确定未来实验的策略和计划也很重要。

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