论文标题
非常巨大的恒星对极度金属贫困星系的化学演化的影响
The impact of very massive stars on the chemical evolution of extremely metal-poor galaxies
论文作者
论文摘要
在最近对极为贫困的低质量星状星系的观察结果中,尽管N/O比与低金属性一致,但仍报道了几乎太阳FE/O比。我们调查了特殊的Fe/O比是否可以是由非常稳定的超稳定性超新星(PISN)产生的早期富集的独特特征。我们以产量为PISN贡献的产量运行化学演化模型。我们使用Goswami等人最近的非旋转恒星产量。 2021年,在这项工作中是故意计算的旋转非常巨大的恒星的新产量。我们还搜索能够重现观测值的最佳初始质量功能(IMF)。我们可以通过采用双模式IMF来重现观测值,并包括最初的旋转非常巨大的恒星。只有在一系列非常巨大的恒星中,我们才能在估计的年轻人中重现几乎太阳FE/O的比率。我们还确认,绝对需要旋转来同时再现观察到的N/O比。这些结果强调了非常巨大的恒星在银河化学进化研究中的重要性,并强烈支持金属较差的恒星星系早期进化阶段中最重的初始质量功能。
In recent observations of extremely metal-poor low-mass starburst galaxies, almost solar Fe/O ratios are reported, despite N/O ratios consistent with the low metallicity. We investigate if the peculiar Fe/O ratios can be a distinctive signature of an early enrichment produced by very massive objects dying as Pair-Instability Supernovae (PISN). We run chemical evolution models with yields that account for the contribution by PISN. We use both the recent non-rotating stellar yields from Goswami et al. 2021, and new yields from rotating very massive stars calculated on purpose in this work. We also search for the best initial mass function (IMF) that is able to reproduce the observations. We can reproduce the observations by adopting a bi-modal IMF and by including an initial burst of rotating very massive stars. Only with a burst of very massive stars can we reproduce the almost solar Fe/O ratios at the estimated young ages. We also confirm that rotation is absolutely needed to concomitantly reproduce the observed N/O ratios. These results stress the importance of very massive stars in galactic chemical evolution studies and strongly support a top-heavy initial mass function in the very early evolutionary stages of metal poor starburst galaxies.