VEGAS-SSS: An intra-group component in the globular cluster system of the NGC 5018 galaxy group using VST data

IF 5.8 2区 物理与天体物理 Q1 ASTRONOMY & ASTROPHYSICS Astronomy & Astrophysics Pub Date : 2025-02-18 DOI:10.1051/0004-6361/202452206
Pratik Lonare, Michele Cantiello, Marco Mirabile, Marilena Spavone, Marina Rejkuba, Michael Hilker, Rebecca Habas, Enrichetta Iodice, Nandini Hazra, Gabriele Riccio
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Abstract

Context. Globular clusters (GCs) offer a valuable tool as a fossil tracer of the formation and evolution of galaxies and their environment. Studying the properties of these stellar systems provides crucial insights into the past formation and interaction events of the galaxies, especially in galaxy group and cluster environments.Aims. We study the properties of globular cluster (GC) candidates in an area of 1.25 × 1.03 sq. degrees centred on the NGC 5018 galaxy group. We use the deep, wide field, and multi-passband (ugr) observations obtained with the VLT Survey Telescope (VST) as part of the VST Elliptical GAlaxy Survey (VEGAS). With a focus on studying small stellar systems (SSS) associated with bright galaxies, this paper constitutes an extension of the VEGAS-SSS series investigating GCs in the NGC 5018 group.Methods. We derived photometric catalogues of compact and extended sources in the area and identified GC candidates using a set of photometric and morphometric selection parameters. A GC candidate catalogue has been provided and inspected using a statistical background decontamination technique, benefiting from the wide area coverage of the data.Results. The 2D distribution map of GC candidates reveals an over-density of sources on the brightest member of the NGC 5018 group. No significant GC over-densities are observed in the other bright galaxies of the group. We report the discovery of a candidate local nucleated low-surface-brightness (LSB) dwarf galaxy that may possibly be engaged in a tidal interaction with NGC 5018. The 2D map also reveals an intra-group GC population aligning with the bright galaxies and along the intra-group light (IGL) component of the group. The radial density profile of GC candidates in NGC 5018 follows the galaxy surface brightness profile. The (g − r) colour profile of GC candidates centred on this galaxy shows no evidence of the well-known colour bimodality; however, it is observed instead in the intra-group population. From the GC luminosity function (GCLF) analysis, we find a low specific frequency, SN = 0.59 ± 0.27 for NGC 5018, which is consistent with previous results based on less deep optical data over a smaller area. This relatively low SN value, coupled with the lack of colour bimodality, might be due to a combination of observational data limitations as well as the post-merger status of NGC 5018, which might host a population of relatively young GCs. For the intra-group GC population, we obtained a lower limit of SN, gr ∼ 0.6. Using the GCLF as a distance indicator, we estimate that NGC 5018 is located 38.0 ± 7.9 Mpc away, which is consistent with values reported in the literature.
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VEGAS-SSS:利用VST数据在NGC 5018星系群的球状星团系统中发现一个团内成分
上下文。球状星团(GCs)作为星系及其环境的形成和演化的化石示踪剂提供了一个有价值的工具。研究这些恒星系统的特性为了解过去星系的形成和相互作用事件提供了至关重要的见解,特别是在星系群和星团环境中。我们在1.25 × 1.03平方的区域内研究了候选球状星团(GC)的性质。以NGC 5018星系群为中心。作为VST椭圆星系巡天(VEGAS)的一部分,我们使用了VLT巡天望远镜(VST)获得的深、宽视场和多通带(ugr)观测数据。本文主要研究与明亮星系相关的小恒星系统(SSS),是研究NGC 5018群中小恒星系统的VEGAS-SSS系列研究的延伸。我们导出了该地区致密和扩展源的光度目录,并使用一组光度和形态选择参数确定了GC候选物。利用统计背景净化技术提供了一份GC候选目录,并对其进行了检查,这得益于数据覆盖范围广。这张GC候选者的二维分布图显示,NGC 5018星系群中最亮的一颗恒星上的源密度过高。在该星系群的其他明亮星系中没有观察到明显的GC超密度。我们报告了一个候选的局部有核低表面亮度(LSB)矮星系的发现,它可能与NGC 5018进行潮汐相互作用。2D图还显示了与明亮星系和群内光(IGL)组成部分对齐的群内GC群。NGC 5018中候选GC的径向密度分布遵循星系表面亮度分布。以这个星系为中心的GC候选者的(g−r)颜色分布没有显示出众所周知的双峰色的证据;然而,它是在群体内人群中观察到的。通过GC光度函数(GCLF)分析,我们发现NGC 5018具有较低的比频,S N = 0.59±0.27,这与以往基于较少深度光学数据在较小面积上的结果一致。相对较低的S N值,加上缺乏双峰色,可能是由于观测数据的限制以及NGC 5018合并后的状态,它可能拥有相对年轻的gc群。对于组内GC种群,我们获得了S N的下限,gr ~ 0.6。利用GCLF作为距离指示器,我们估计NGC 5018的距离为38.0±7.9 Mpc,这与文献报道的值一致。
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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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