IF 5.4 2区 物理与天体物理 Q1 ASTRONOMY & ASTROPHYSICS
Bernardo P. L. Ferreira, Bruno Dias, João F. C. Santos, Francisco F. S. Maia, Eduardo Bica, Leandro O. Kerber, Tina Armond, Bruno Quint, Raphael A. P. Oliveira, Stefano O. Souza, José G. Fernández-Trincado, Orlando Katime Santrich
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摘要

背景。在大麦哲伦云(LMC)中,仅发现了7个年龄大于∼4 Gyr和小于∼10 Gyr的星团,它们处于所谓的年龄差距之中。我们旨在分析VISCACHA巡天中V波段和I波段的测光数据,首次确定SL 2的天体物理参数,揭示该星团确实位于年龄差距之内。我们使用新开发的SIESTA代码对合成色-星等图(CMD)进行统计同调拟合,通过两个恒星演化模型网格来确定星团的年龄、金属性、距离、色彩过度和双星比例。此外,还根据星团的积分星等估算了星团质量。等时线拟合得到的年龄与年龄差距相符,使用 PARSEC-COLIBRI 等时线时为 (7.17 ± 0.35) Gyr,使用 MIST 时为 (8.02 ± 0.45) Gyr。值得注意的是,SL 2 是在 LMC 南部地区发现的第一个年龄差距星团。该星团的质量远远小于LMC较老星团的质量。SL 2的金属性与另外两个年龄相近的年龄差距星团(即ESO 121-03和KMHK 1592)以及LMC场恒星群相当。虽然发现具有这种特征的新星团可以被看作是年龄差距星团在原地形成的证据,但是SL2的日心距离使它远离了LMC中心,类似于SMC的距离。因此,它的起源问题以及其他年龄差距星团的起源问题仍然悬而未决,有待进一步研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The VISCACHA Survey
Context. In the Large Magellanic Cloud (LMC), only seven star clusters have been discovered to be older than ∼4 Gyr and younger than ∼10 Gyr, placing them in what is known as the age gap.Aims. We aim to analyze the photometric data from the VISCACHA survey in the V and I bands to determine, for the first time, the astrophysical parameters of SL 2, revealing that the cluster is indeed situated within the age gap.Methods. We used our newly developed SIESTA code to carry out a statistical isochrone fitting with synthetic color-magnitude diagrams (CMDs) to determine the cluster age, metallicity, distance, color excess, and binary fraction with two grids of stellar evolution models. In addition, the cluster mass was estimated based on its integrated magnitude.Results. The ages obtained from isochrone fitting are compatible with the age gap, amounting to (7.17 ± 0.35) Gyr when using PARSEC-COLIBRI isochrones and (8.02 ± 0.45) Gyr when using MIST. Notably, SL 2 is the first age gap cluster discovered in the southern region of the LMC. The mass of the cluster is considerably smaller than that of the group of older LMC clusters.Conclusions. SL 2 has a comparable metallicity to the other two age gap clusters with similar ages, namely, ESO 121-03 and KMHK 1592, as well as the LMC field star population. While the discovery of a new cluster with such characteristics could be seen as evidence that age gap clusters were formed in situ, the heliocentric distance of SL2 locates it far from the LMC center, akin to the SMC distance. Therefore, the question of its origin, alongside that of other age gap clusters, remains unresolved and open to further investigation.
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来源期刊
Astronomy & Astrophysics
Astronomy & Astrophysics 地学天文-天文与天体物理
CiteScore
10.20
自引率
27.70%
发文量
2105
审稿时长
1-2 weeks
期刊介绍: Astronomy & Astrophysics is an international Journal that publishes papers on all aspects of astronomy and astrophysics (theoretical, observational, and instrumental) independently of the techniques used to obtain the results.
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