首页> 外文期刊>Journal of Physics, G. Nuclear and Particle Physics: An Institute of Physics Journal >Observational nuclear astrophysics: neutron-capture element abundances in old, metal-poor stars
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Observational nuclear astrophysics: neutron-capture element abundances in old, metal-poor stars

机译:观测核天体物理学:贫金属老星中的中子俘获元素丰度

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The chemical abundances of metal-poor stars provide a great deal of information regarding the individual nucleosynthetic processes that created the observed elements and the overall process of chemical enrichment of the galaxy since the formation of the first stars. Here we review the abundance patterns of the neutron-capture elements (Z ≥ 38) in thosemetal-poor stars and our current understanding of the conditions and sites of their production at early times.We also review the relative contributions of these different processes to the buildup of these elements within the galaxy over time, and outline outstanding questions and uncertainties that complicate the interpretation of the abundance patterns observed in metal-poor stars. It is anticipated that future observations of large samples of metal-poor stars will help discriminate between different proposed neutron-capture element production sites and better trace the chemical evolution of the galaxy.
机译:贫金属恒星的化学丰度提供了大量有关单个核合成过程的信息,这些单个核合成过程创建了观察到的元素以及自第一批恒星形成以来银河系化学富集的总体过程。在这里,我们回顾了那些贫金属恒星中中子俘获元素(Z≥38)的丰度模式,以及我们对早期它们的生产条件和产地的当前了解,还回顾了这些不同过程对中子俘获的相对贡献。随着时间的推移,这些元素在银河系中的积累,并概述了悬而未决的问题和不确定性,这些问题和不确定性使对贫金属恒星中观测到的丰度模式的解释变得复杂。可以预期,对大量贫金属恒星样本的未来观察将有助于区分建议的中子俘获元件的不同生产地点,并更好地追踪星系的化学演化。

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