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首页> 外文期刊>International journal of modern physics, D. Gravitation, astrophysics, cosmology >Neutron star mergers as sites of r-process nucleosynthesis and short gamma-ray bursts
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Neutron star mergers as sites of r-process nucleosynthesis and short gamma-ray bursts

机译:中子星兼并作为R-Process核酸核酸的网站和短伽马射线爆发

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Neutron star mergers have been long considered as promising sites of heavy r-process nucleosynthesis. We overview the observational evidence supporting this scenario including: the total amount of r-process elements in the galaxy, extreme metal-poor stars, geological radioactive elemental abundances, dwarf galaxies and short gamma-ray bursts (sGRBs). Recently, the advanced LIGO and Virgo observatories discovered a gravitational-wave signal of a neutron star merger, GW170817, as well as accompanying multi-wavelength electromagnetic (EM) counterparts. The ultra-violet, optical and near infrared (n/R) observations point to r-process elements that have been synthesized in the merger ejecta. The rate and ejected mass inferred from GW170817 and the EM counterparts are consistent with other observations. We however, find that, within the simple one zone chemical evolution models (based on merger rates with reasonable delay time distributions as expected from evolutionary models, or from observations of sGRBs), it is difficult to reconcile the current observations of the Eu abundance history of galactic stars for [Fe/H] ??1. This implies that to account for the role of mergers in the galactic chemical evolution, we need a galactic model with multiple populations that have different spatial distributions and/or varying formation rates.
机译:中子星兼并长期被认为是重型r-process核酸的有前途的遗迹。我们概述了支持这种情况的观察证据,包括:银河系,极端金属贫乏明星,地质放射性元素丰富,矮星系和短伽马射线爆裂(SGRBS)中的R-Process元素总量。最近,先进的Ligo和Virgo观察者发现了中子星合并,GW170817的引力波信号,以及伴随的多波长电磁(EM)对应物。超紫,光学和近红外(N / R)观察到在合并喷射物中合成的R-Process元件。从GW170817推断的速率和喷射质量和EM对应物与其他观察结果一致。然而,我们发现,在简单的一个区域化学进化模型中(基于与进化模型的预期的合理延迟时间分布的合并率,或从SGRBS的观察),难以调和欧盟丰富历史的当前观察Galactic星星为[Fe / H] ?? 1。这意味着要考虑到合并在银河化学进化中的作用,我们需要一个具有多种群体的银河模型,其具有不同的空间分布和/或不同的形成速率。

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