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The physical properties of Cluster Chains

  • Laura Posch
  • , João Alves
  • , Nuria Mirét-Roig
  • , Sebastian Ratzenböck
  • , Josefa Großschedl
  • , Stefan Meingast
  • , Cameren Swiggum
  • , Ralf Konietzka

Publications: Contribution to journalArticlePeer Reviewed

Abstract

We explore the kinematics and star formation history of the Scorpius Centaurus (Sco-Cen) OB association following the initial identification of sequential, linearly aligned chains of clusters. Building upon our characterization of the Corona Australis (CrA) chain, we now analyze two additional major cluster chains that exhibit similar characteristics: the Lower Centaurus Crux (LCC) and Upper Scorpius (Upper Sco) chains. All three cluster chains display distinct sequential patterns in 1) the 3D spatial distribution, 2) age, 3) velocity, and 4) mass. The Upper-Sco chain is the most massive and complex cluster chain, possibly consisting of two or more overlapping subchains. We discuss the possible formation of cluster chains and argue for a scenario where feedback from the most massive star formation episode 15 Myr ago initiated the formation of these spatio-temporal cluster sequences. Our results identify cluster chains as a distinct type of stellar structure with well-defined physical properties, formed in environments capable of sustaining stellar feedback over timescales of 5-10 Myr. We find that around 40% of the stellar population in Sco-Cen formed due to triggered star formation, with 35% forming along the three cluster chains. We conclude that cluster chains could be common structures in OB associations, particularly in regions that have similar natal environments as Sco-Cen. Beyond their significance for star formation and stellar feedback, they appear to be promising laboratories for chemical enrichment and the transport of elements from one generation to the next in the same star-forming region.
Original languageEnglish
Article numberA175
Number of pages13
JournalAstronomy & Astrophysics
Volume693
DOIs
Publication statusPublished - 1 Jan 2025

Funding

S. Ratzenböck acknowledges funding by the Aus- trian Research Promotion Agency (FFG, https://www.ffg.at/) under project number FO999892674. JG acknowledges co-funding from the European Union, the Central Bohemian Region, and the Czech Academy of Sciences, as part of the MERIT fellowship (Project 101081195, MSCA-COFUND Horizon Europe). JG acknowledges the Collaborative Research Center 1601 (SFB 1601) funded by the Deutsche Forschungsgemeinschaft (DFG, German Research Foundation) – 500700252. This research has made use of Python, https://www.python.org, of Astropy, a community-developed core Python package for Astronomy (As- tropy Collaboration et al. 2018, 2022), NumPy (Harris et al. 2020), Matplotlib (Hunter 2007), Galpy (Bovy 2015), Scipy (Virtanen et al. 2020), PyMC (Sal- vatier et al. 2016), and Plotly (Inc. 2015). Further, it has made use of the SIM- BAD database operated at CDS, Strasbourg, France (Wenger et al. 2000), of “Aladin sky atlas” developed at CDS, Strasbourg Observatory, France (Bonnarel et al. 2000; Boch & Fernique 2014), and of TOPCAT, an interactive graphical viewer and editor for tabular data (Taylor 2005).

Austrian Fields of Science 2012

  • 103004 Astrophysics
  • 103003 Astronomy

Keywords

  • Astrophysics - Astrophysics of Galaxies
  • Stars: kinematics and dynamics
  • Stars: formation
  • ISM: kinematics and dynamics
  • Open clusters and associations: individual: Scorpius-Centaurus

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