利用详细的单星和双星演化模型探测年轻疏散星团中红超巨星的大观测光度扩散

Chen Wang, Lee Patrick, Abel Schootemeijer, Selma E. de Mink, Norbert Langer, Nikolay Britavskiy, Xiao-Tian Xu, Julia Bodensteiner, Eva Laplace, Ruggero Valli, Alejandro Vigna-Gómez, Jakub Klencki, Stephen Justham, Cole Johnston and Jing-ze Ma
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摘要

红超巨星(RSGs)代表了大质量恒星演化的后期阶段。最近的观测表明,年轻疏散星团中rsg的光度范围比单星演化模型所预测的要宽。二元演化效应被认为是一种可能的解释。在此,我们分析了3670个详细的双星演化模型以及相应的单星模型,以探讨双星的质量传递和双星合并对年龄高达100 Myr的星团中rsg亮度分布的贡献。我们证实,由于两颗主序星之间的合并,同一星群中RSG的预期亮度范围可以跨越10倍,这很好地再现了富星团中观测到的RSG亮度范围。虽然由于传质导致的光度增加是有限的,但它可能有助于增加超光rsg的数量。然而,我们的研究结果也表明,单凭双星效应不足以解释发现的rsg的数量,其亮度高达当前单星模型预测的3倍。我们讨论了观测精度、旋转混合、年龄分布和内在RSG变异性作为可能的解释。对年轻疏散星团中rsg的进一步观察,特别是对其固有亮度变化的研究,似乎对解开这些影响至关重要。
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Using Detailed Single-star and Binary-evolution Models to Probe the Large Observed Luminosity Spread of Red Supergiants in Young Open Star Clusters
Red supergiants (RSGs) represent a late evolutionary stage of massive stars. Recent observations reveal that the observed luminosity range of RSGs in young open clusters is wider than expected from single-star evolution models. Binary evolution effects have been suggested as a possible explanation. Here, we analyze 3670 detailed binary-evolution models, as well as corresponding single-star models, to probe the contribution of binary mass transfer and binary mergers to the luminosity distribution of RSGs in star clusters with ages up to 100 Myr. We confirm that the expected luminosity range of RSGs in a coeval population can span a factor of 10, as a consequence of mergers between two main-sequence stars, which reproduces the observed RSG luminosity ranges in rich clusters well. While the luminosity increase as consequence of mass transfer is more limited, it may help to increase the number of overluminous RSGs. However, our results also demonstrate that binary effects alone are insufficient to account for the number of RSGs found with luminosities of up to 3 times those predicted by current single-star models. We discuss observational accuracy, rotational mixing, age spread, and intrinsic RSG variability as possible explanations. Further observations of RSGs in young open clusters, in particular studies of their intrinsic brightness variability, appear crucial for disentangling these effects.
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