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Abundances of Sr, Y, and Zr in metal-poor stars and implications for chemical evolution in the early galaxy

机译:贫金属恒星中Sr,Y和Zr的丰度及其对早期星系化学演化的影响

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摘要

We have attributed the elements from Sr through Ag in stars of low metallicities ([Fe/H] ≾ -1.5) to charged-particle reactions (CPRs) in neutrino-driven winds, which are associated with neutron star formation in low-mass and normal supernovae (SNe) from progenitors of ~8-11 M⊙ and ~12-25 M⊙, respectively. Using this rule and attributing all Fe production to normal SNe, we previously developed a phenomenological two-component model, which predicts that [Sr/Fe] ≥ -0.32 for all metal-poor stars. This is in direct conflict with the high-resolution data now available, which show that there is a great shortfall of Sr relative to Fe in many stars with [Fe/H] ≾3. The same conflict also exists for the CPR elements Y and Zr. We show that the data require a stellar source leaving behind black holes and that hypernovae (HNe) from progenitors of ~25-50 M⊙ are the most plausible candidates. If we expand our previous model to include three components (low-mass and normal SNe and HNe), we find that essentially all of the data are very well described by the new model. The HN yield pattern for the low-A elements from Na through Zn ( including Fe) is inferred from the stars deficient in Sr, Y, and Zr. We estimate that HNe contributed ~24% of the bulk solar Fe inventory while normal SNe contributed only ~ 9% (not the usually assumed ~33%). This implies a greatly reduced role of normal SNe in the chemical evolution of the low-A elements.
机译:我们将低金属度([Fe / H]≾-1.5)恒星中从Sr到Ag的元素归因于中微子驱动风中的带电粒子反应(CPR),这与低质量和低质量中子星的形成有关正常的超新星(SNe),分别来自〜8-11M⊙和〜12-25M⊙的祖细胞。使用此规则并将所有铁的产生归因于正常的SNe,我们先前建立了一种现象学上的两成分模型,该模型预测所有贫金属恒星的[Sr / Fe]≥-0.32。这与现在可获得的高分辨率数据直接冲突,后者表明在[Fe / H]≾3的许多恒星中,Sr相对于Fe的短缺很大。 CPR元素Y和Zr也存在相同的冲突。我们表明,数据需要恒星源,而黑洞后遗留下来,来自25-50M⊙的祖先的超新星(HNe)是最合理的候选者。如果我们将以前的模型扩展到包括三个分量(低质量和正常SNe和HNe),我们会发现新模型基本上描述了所有数据。从Sr,Y和Zr不足的恒星推断出Na到Zn(包括Fe)的低A元素的HN产量模式。我们估计,HNe贡献了约24%的太阳能电池铁库存,而普通SNe仅贡献了约9%(不是通常假定的33%)。这意味着正常SNe在低A元素的化学演化中的作用大大降低。

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