The Physics of Star Cluster Formation and Evolution

被引:0
作者
Martin G. H. Krause
Stella S. R. Offner
Corinne Charbonnel
Mark Gieles
Ralf S. Klessen
Enrique Vázquez-Semadeni
Javier Ballesteros-Paredes
Philipp Girichidis
J. M. Diederik Kruijssen
Jacob L. Ward
Hans Zinnecker
机构
[1] University of Hertfordshire,Centre for Astrophysics Research, School of Physics, Astronomy and Mathematics
[2] The University of Texas,Department of Astronomy
[3] University of Geneva,Department of Astronomy
[4] CNRS & Univ. of Toulouse,IRAP
[5] Universitat de Barcelona,Institut de Ciències del Cosmos (ICCUB
[6] ICREA,IEEC)
[7] Universität Heidelberg,Zentrum für Astronomie, Institut für Theoretische Astrophysik
[8] Universidad Nacional Autónoma de Méxíco,Instituto de Radioastronomía y Astrofísica
[9] Leibniz-Institut für Astrophysik (AIP),Astronomisches Rechen
[10] Zentrum für Astronomie der Universität Heidelberg,Institut
[11] Universidad Autonoma de Chile,Nucleo de Astroquimica y Astrofisica
来源
Space Science Reviews | 2020年 / 216卷
关键词
Galaxies: star clusters: general; ISM: kinematics and dynamics; Open clusters and associations: general; Stars: formation;
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摘要
Star clusters form in dense, hierarchically collapsing gas clouds. Bulk kinetic energy is transformed to turbulence with stars forming from cores fed by filaments. In the most compact regions, stellar feedback is least effective in removing the gas and stars may form very efficiently. These are also the regions where, in high-mass clusters, ejecta from some kind of high-mass stars are effectively captured during the formation phase of some of the low mass stars and channeled into the latter to form multiple populations. Star formation epochs in star clusters are generally set by gas flows that determine the abundance of gas in the cluster. We argue that there is likely only one star formation epoch after which clusters remain essentially clear of gas by cluster winds. Collisional dynamics is important in this phase leading to core collapse, expansion and eventual dispersion of every cluster. We review recent developments in the field with a focus on theoretical work.
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