The emergence of globular clusters and globular-cluster-like dwarfs

Fuente: arXiv
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Main Authors: Taylor, Ethan D., Read, Justin I., Orkney, Matthew D. A., Kim, Stacy Y., Pontzen, Andrew, Agertz, Oscar, Rey, Martin P., Andersson, Eric P., Collins, Michelle L. M., Yates, Robert M.
Format: Preprint
Published: 2025
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author Taylor, Ethan D.
Read, Justin I.
Orkney, Matthew D. A.
Kim, Stacy Y.
Pontzen, Andrew
Agertz, Oscar
Rey, Martin P.
Andersson, Eric P.
Collins, Michelle L. M.
Yates, Robert M.
author_facet Taylor, Ethan D.
Read, Justin I.
Orkney, Matthew D. A.
Kim, Stacy Y.
Pontzen, Andrew
Agertz, Oscar
Rey, Martin P.
Andersson, Eric P.
Collins, Michelle L. M.
Yates, Robert M.
contents Globular clusters (GCs) are among the oldest and densest stellar systems in the Universe, yet how they form remains a mystery. Here we present a suite of cosmological simulations in which both dark-matter-free GCs and dark-matter-rich dwarf galaxies naturally emerge in the Standard Cosmology. We show that these objects inhabit distinct locations in the size-luminosity plane and that they have similar ages, age spread, metallicity and metallicity spread to globulars and dwarfs in the nearby Universe. About half of our simulated globulars form by means of regular star formation near the centres of their host dwarf, with the rest forming further out, triggered by mergers. The latter are more tidally isolated and more likely to survive to the present day. Finally, our simulations predict the existence of a new class of object that we call 'globular-cluster-like dwarfs' (GCDs). These form from a single, self-quenching, star-formation event in low-mass dark-matter halos at high redshift and have observational properties intermediate between globulars and dwarfs. We identify several dwarfs in our Galaxy, such as Reticulum II (refs. 2-4), that could be in this new class. If so, they promise unprecedented constraints on dark-matter models and new sites to search for metal-free stars.
format Preprint
id arxiv_https___arxiv_org_abs_2509_09582
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle The emergence of globular clusters and globular-cluster-like dwarfs
Taylor, Ethan D.
Read, Justin I.
Orkney, Matthew D. A.
Kim, Stacy Y.
Pontzen, Andrew
Agertz, Oscar
Rey, Martin P.
Andersson, Eric P.
Collins, Michelle L. M.
Yates, Robert M.
Astrophysics of Galaxies
Globular clusters (GCs) are among the oldest and densest stellar systems in the Universe, yet how they form remains a mystery. Here we present a suite of cosmological simulations in which both dark-matter-free GCs and dark-matter-rich dwarf galaxies naturally emerge in the Standard Cosmology. We show that these objects inhabit distinct locations in the size-luminosity plane and that they have similar ages, age spread, metallicity and metallicity spread to globulars and dwarfs in the nearby Universe. About half of our simulated globulars form by means of regular star formation near the centres of their host dwarf, with the rest forming further out, triggered by mergers. The latter are more tidally isolated and more likely to survive to the present day. Finally, our simulations predict the existence of a new class of object that we call 'globular-cluster-like dwarfs' (GCDs). These form from a single, self-quenching, star-formation event in low-mass dark-matter halos at high redshift and have observational properties intermediate between globulars and dwarfs. We identify several dwarfs in our Galaxy, such as Reticulum II (refs. 2-4), that could be in this new class. If so, they promise unprecedented constraints on dark-matter models and new sites to search for metal-free stars.
title The emergence of globular clusters and globular-cluster-like dwarfs
topic Astrophysics of Galaxies
url https://arxiv.org/abs/2509.09582