论文标题

理论合成光谱对$α$增强的年轻,二进制恒星种群的依赖性

The Dependence of Theoretical Synthetic Spectra on $α$-enhancement in Young, Binary Stellar Populations

论文作者

Byrne, C. M., Stanway, E. R., Eldridge, J. J., McSwiney, L., Townsend, O. T.

论文摘要

$α$元素(例如氧气)的增强是早期宇宙化学演化的重要阶段,而nebular材料比铁早于这些元素富集。在这里,我们介绍了将恒星光谱与$α$增强的作品结合在一起的模型,重点是对年轻恒星种群的综合光的影响,包括使用二进制群体和光谱合成(BPASS)框架的大型二进制星级分数的人,同时使用solar缩放的稳定性恒星进化模型。我们发现,诸如电离通量的产生,紫外斜率和光学颜色之类的广泛输出仅受[$α$/fe]的变化而微弱的影响。许多特征,例如紫外线指数(例如,1719和1853Å)和光线指数(例如MGB),分别对连续恒星形成的种群和单个Starburst人群的组成变化敏感。我们发现,在超过1GYR的年龄中,$α$增强的恒星种群似乎比太阳能标准的对应物更蓝,并且显示出光学线指数对组成的预期灵敏度,这与先前的工作一致。紫外线吸收线对丰度比的微妙之处相对不敏感,尽管具有足够的测量精度,紫外线指数的组合可能可以同时测量年轻恒星种群的总金属质量分数和[$α$/fe]。输出模型被指定为BPASS v2.3,并提供给社区,目的是通过James Webb Space望远镜协助解释高红移星系的观察。

The enhancement of $α$ elements such as oxygen is an important phase in the chemical evolution of the early Universe, with nebular material becoming enriched in these elements sooner than iron. Here we present models which incorporate stellar spectra with $α$-enhanced compositions, focusing on the impact on the integrated light of young stellar populations, including those with large binary star fractions using the Binary Populations and Spectral Synthesis (BPASS) framework, while using Solar-scaled stellar evolution models. We find that broad spectrum outputs such as production of ionising flux, the ultraviolet spectral slope and optical colours are only weakly affected by a change in [$α$/Fe]. A number of features such as ultraviolet line indices (e.g. at 1719 and 1853Å) and optical line indices (such as MgB) are sensitive to such changes in composition for a continuously star-forming population and a single starburst population respectively. We find that at ages of more than 1Gyr, $α$-enhanced stellar populations appear bluer than their Solar-scaled counterparts, and show expected sensitivity of optical line indices to composition, in agreement with previous work. The ultraviolet stellar absorption lines are relatively insensitive to subtleties in the abundances ratios, although with sufficient measurement precision, a combination of UV line indices may enable a simultaneous measurement of total metallicity mass fraction and [$α$/Fe] in young stellar populations. The output models are designated as BPASS v2.3 and made available to the community with the aim of assisting interpretation of observations of high-redshift galaxies with the James Webb Space Telescope.

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