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首页> 外文期刊>The Astrophysical journal >THE POTENTIAL IMPORTANCE OF BINARY EVOLUTION IN ULTRAVIOLET-OPTICAL SPECTRAL FITTING OF EARLY-TYPE GALAXIES
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THE POTENTIAL IMPORTANCE OF BINARY EVOLUTION IN ULTRAVIOLET-OPTICAL SPECTRAL FITTING OF EARLY-TYPE GALAXIES

机译:二元演化在早期星系的紫外光光谱拟合中的潜在重要性

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Most galaxies possibly contain some binaries, and more than half of Galactic hot subdwarf stars, which are thought to be a possible origin of the UV-upturn of old stellar populations, are found in binaries. However, the effect of binary evolution has not been taken into account in most works on the spectral fitting of galaxies. This paper studies the role of binary evolution in the spectral fitting of early-type galaxies, via a stellar population synthesis model including both single and binary star populations. Spectra from ultraviolet to optical bands are fitted to determine a few galaxy parameters. The results show that the inclusion of binaries in stellar population models may lead to obvious change in the determination of some parameters of early-type galaxies and therefore it is potentially important for spectral studies. In particular, the ages of young components of composite stellar populations become much older when using binary star population models instead of single star population models. This implies that binary star population models will measure significantly different star formation histories for early-type galaxies compared to single star population models. In addition, stellar population models with binary interactions on average measure larger dust extinctions than single star population models. This suggests that when binary star population models are used, negative extinctions are possibly no longer necessary in the spectral fitting of galaxies (see previous works, e.g., Cid Fernandes et al. for comparison). Furthermore, it is shown that optical spectra have strong constraints on stellar age while UV spectra have strong constraints on binary fraction. Finally, our results suggest that binary star population models can provide new insight into the stellar properties of globular clusters.
机译:大多数星系可能都包含一些双星,并且在双星中发现了一半以上的银河热矮星,它们被认为是旧恒星种群紫外线上升的可能起源。但是,大多数关于星系光谱拟合的工作都没有考虑到二元演化的影响。本文通过包括单星和双星恒星在内的恒星总数合成模型,研究了双星演化在早期星系光谱拟合中的作用。拟合从紫外线到光学波段的光谱,以确定一些星系参数。结果表明,在恒星种群模型中包含二进制可能会导致早期星系某些参数的确定发生明显变化,因此对于光谱研究可能具有重要意义。特别是,当使用双星种群模型而不是单星种群模型时,复合恒星种群的年轻组成部分的年龄变得更大。这意味着与单星种群模型相比,双星种群模型将测量早期类型星系的显着不同的恒星形成历史。此外,与单星种群模型相比,具有二元相互作用的恒星种群模型平均具有更大的消光作用。这表明当使用双星恒星种群模型时,在星系的光谱拟合中不再可能需要消光(请参见先前的工作,例如Cid Fernandes等人进行比较)。此外,它表明,光谱对恒星年龄有很强的约束,而紫外线光谱对二元分数有很强的约束。最后,我们的结果表明,双星恒星种群模型可以为球状星团的恒星性质提供新的见解。

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