3 things they don't tell you about star clusters
arXiv:1908.02301 · doi:10.1017/S1743921319007312
Abstract
Dense stellar systems in general and star clusters in particular have recently regained the interest of the extragalactic and even cosmology communities, due to the role they could play as actors and probes of re-ionization, galactic archeology and the dark matter content of galaxies, among many others. In the era of the exploitation and the preparation of large stellar surveys (Gaia, APOGEE, 4MOST, WEAVE), of the detection of gravitational waves mostly originating from dense regions like the cores of clusters (Ligo, LISA), and in an always more holistic view of galaxy formation (HARMONI, Euclid, LSST, soon to be known as the Vera Rubin Survey Telescope, VRST), a complete theory on the formation and evolution of clusters is needed to interpret the on-going and forthcoming data avalanche. In this context, the community carries an effort to model the aspects of star cluster formation and evolution in galactic and even cosmological context. However, it is not always easy to understand the caveats and the shortcuts taken in theories and simulations, and their implications on the conclusions drawn. I take the opportunity of this document to highlight three of these topics and discuss why some shortcuts taken by the community are or could be misleading.
Proceedings of the IAU 351 held in Bologna in June 2019 (Star Clusters: From the Milky Way to the Early Universe)
References in corpus (13)
- A systematic variation of the stellar initial mass function in early-type galaxies
- Starbursts triggered by inter-galactic tides and interstellar compressive turbulence
- A parsec-resolution simulation of the Antennae galaxies: Formation of star clusters during the merger
- Star cluster formation in cosmological simulations. I. Properties of young clusters
- The E-MOSAICS project: tracing galaxy formation and assembly with the age-metallicity distribution of globular clusters
- Large scale galactic turbulence: can self-gravity drive the observed HI velocity dispersions?
- The HST/ACS Coma Cluster Survey. X. Nuclear star clusters in low-mass early-type galaxies: scaling relations
- The origin of the Milky Way globular clusters
- New insights on the formation of nuclear star clusters
- The Origin of the Gaussian Initial Mass Function of Old Globular Cluster Systems
- IRAC and MIPS Observations of the Interacting Galaxies IC 2163 and NGC 2207: Clumpy Emission
- Supernovae feedback propagation: the role of turbulence
- The origin of discrete multiple stellar populations in globular clusters
Cited by in corpus (6)
- Star clusters near and far; tracing star formation across cosmic time
- From lenticulars to blue compact dwarfs: the stellar mass fraction is regulated by disc gravitational instability
- Dynamical Evolution of Multiple-Population Globular Clusters
- MOCCA Survey Database: Extra Galactic Globular Clusters. I. Method and first results
- Star Cluster Formation and Evolution in M101: An Investigation with the Legacy Extragalactic UV Survey
- MOCCA-Survey Database: Extra Galactic Globular Clusters. II. Milky Way and Andromeda