Spatial distribution and clustering properties of the young stellar populations in the Carina Nebula complex and Car OB1

IF 5.8 2区 物理与天体物理 Q1 ASTRONOMY & ASTROPHYSICS
C. Göppl, T. Preibisch
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引用次数: 0

Abstract

Aims. We use Gaia DR3 astrometry and photometry to analyze the spatial distribution of the young stellar populations and stellar clusters and to search for new OB star candidates in the Carina Nebula complex and the full extent (∼5°, corresponding to ∼200 pc) of the Car OB1 association.Methods. We first performed a new census of high-mass stars in Car OB1 and compiled a comprehensive catalog of 517 stars with known spectral types (128 O-type, WR, and supergiant stars, and 389 B-type stars) that have Gaia DR3 parallaxes consistent with membership in the association. We applied the clustering algorithm DBSCAN on the Gaia DR3 data of the region to find stellar clusters, determine their distances and kinematics, and estimate ages. We also used Gaia astrometry and the additional astrophysical_parameters table to perform a spatially unbiased search for further high-mass members of Car OB1 over the full area of the association.Results. Our DBSCAN analysis finds 15 stellar clusters and groups in Car OB1, four of which were not known before. Most clusters (80%) show signs of expansion or contraction, four of them with a ≥2σ significance. We find a global expansion of the Car OB1 association with a velocity of vout = 5.25 ± 0.02 km s−1. A kinematic traceback of the high-mass stars shows that the spatial extent of the association was at a minimum 3–4 Myr ago. Using astrophysical parameters by Gaia DR3, we identified 15 new O-type and 589 new B-type star candidates in Car OB1. The majority (≳54%) of the high-mass stars constitute a non-clustered distributed stellar population. Based on our sample of high-mass stars, we estimate a total stellar population of at least ∼8 × 104 stars in Car OB1.Conclusions. Our study is the first systematic astrometric analysis that covers the full spatial extent of the Car OB1 association, and it therefore substantially increases the knowledge of the distributed stellar population and spatial evolution of the entire association. Our results suggest suggests Car OB1 to be the most massive known star-forming complex in our Galaxy.
船底座星云复合体和Car OB1中年轻恒星群的空间分布和聚集特性
目标。我们使用Gaia DR3天体测量和光度法分析了年轻恒星群和星团的空间分布,并在船底座星云复合体和Car OB1关联的完整范围(~ 5°,对应于~ 200pc)中寻找新的OB星候选者。我们首先对Car OB1中的大质量恒星进行了新的普查,并编制了一个包含517颗已知光谱类型的恒星的综合目录(128颗o型、WR型和超巨星,以及389颗b型恒星),这些恒星的Gaia DR3视差与该协会的成员一致。我们将DBSCAN聚类算法应用于该区域的Gaia DR3数据上,找到恒星星团,确定它们的距离和运动学,并估计它们的年龄。我们还使用了盖亚天体测量和附加的天体物理参数表,在整个关联区域内对Car OB1的其他大质量成员进行了空间无偏搜索。我们的DBSCAN分析在Car OB1中发现了15个星团和星团,其中4个是以前不知道的。大多数星团(80%)表现出膨胀或收缩的迹象,其中4个具有≥2σ显著性。我们发现Car - OB1关联的整体扩展速度为vout = 5.25±0.02 km s−1。高质量恒星的运动学回溯显示,这种联系的空间范围至少在3-4百万光年以前。利用Gaia DR3的天体物理参数,我们在Car OB1中发现了15颗新的o型和589颗新的b型候选恒星。大多数(约54%)的大质量恒星构成了非星团分布的恒星群。根据我们的大质量恒星样本,我们估计Car ob1中的恒星总数至少为8 × 104颗。我们的研究是第一个系统的天体测量分析,覆盖了Car - OB1星系群的整个空间范围,因此它大大增加了对整个星系群的分布恒星群和空间演化的认识。我们的研究结果表明,Car OB1是我们银河系中已知质量最大的恒星形成复合体。
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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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