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We use recently derived ages for 61 Milky Way (MW) globular clusters (GCs) to show that their age-metallicity relation (AMR) can be divided into two distinct, parallel sequences at [Fe/H] $\ga -1.8$. Approximately one-third of the clusters…

星系天体物理 · 物理学 2015-06-17 Ryan Leaman , Don A. VandenBerg , J. Trevor Mendel

Recent observations have revealed that at least 8 globular clusters (GCs) in the Galaxy show internal abundance spreads in [Fe/H]. We investigate the origin of these `anomalous' GCs using numerical simulations of GCs in the dwarfs orbiting…

星系天体物理 · 物理学 2016-08-30 Kenji Bekki , Takuji Tsujimoto

The properties of massive and compact early-type galaxies provide important constraints on early galaxy formation. Among these, massive relic galaxies, characterized by old stellar populations and minimal late-time accretion, are considered…

This paper explores the mapping between the observable properties of a stellar halo in phase- and abundance-space and the parent galaxy's accretion history in terms of the characteristic epoch of accretion and mass and orbits of progenitor…

The globular cluster (GC) systems of the Milky Way and of our neighboring spiral galaxy, M31, comprise 2 distinct entities, differing in 3 respects. 1. M31 has young GCs, ages from ~100 Myr to 5 Gyr old, as well as old globular clusters. No…

Circa 10 billion years ago the Milky Way merged with a massive satellite, Gaia-Enceladus. To gain insight into the properties of its debris we analyse in detail the suite of simulations from Villalobos & Helmi (2008), which includes an…

星系天体物理 · 物理学 2020-10-28 Helmer H. Koppelman , Roy O. Y. Bos , Amina Helmi

The established by us possibility to consider circumgalactic clouds (CGCs) as the remnants of the parent clouds in which globular clusters (GCs) have been formed (Acharova & Sharina 2018) is based on a comparison of the following facts.…

星系天体物理 · 物理学 2021-02-03 I. A. Acharova , M. E. Sharina

Based on a new large, homogeneous photometric database of 35 Galactic globular clusters (GGCs), a set of distance and reddening independent relative age indicators has been measured. The observed D(V-I)_2.5 and D(V)(HB-TO) vs. metallicity…

天体物理学 · 物理学 2009-10-31 A. Rosenberg , I. Saviane , G. Piotto , A. Aparicio

We study the formation of over 6000 compact groups (CGs) of galaxies identified in mock redshift-space galaxy catalogues built from semi-analytical models of galaxy formation (SAMs) run on the Millennium Simulations. We select CGs of 4…

星系天体物理 · 物理学 2021-03-24 Eugenia Diaz-Gimenez , Ariel Zandivarez , Gary Mamon

Globular clusters (GCs) are often used to estimate the dark matter content of galaxies, especially dwarfs, where other kinematic tracers are lacking. These estimates typically assume spherical symmetry and dynamical equilibrium, assumptions…

星系天体物理 · 物理学 2021-02-17 Jessica E. Doppel , Laura V. Sales , Julio F. Navarro , Mario G. Abadi , Eric W. Peng , Elisa Toloba

We analyse the phase-space structure of simulated thick discs that are the result of a significant merger between a disc galaxy and a satellite. Our main goal is to establish what would be the characteristic imprints of a merger origin for…

星系天体物理 · 物理学 2015-05-13 Álvaro Villalobos , Amina Helmi

We perform N-body simulations of a cluster that forms in a dwarf galaxy and is then accreted by the Milky Way to investigate how a cluster's structure is affected by a galaxy merger. We find that the cluster's half mass radius will respond…

星系天体物理 · 物理学 2015-06-22 Meghan Miholics , Jeremy J. Webb , Alison Sills

Our numerical simulations first demonstrate that the pressure of ISM in a major merger becomes so high ($>$ $10^5$ $\rm k_{\rm B}$ K $\rm cm^{-3}$) that GMCs in the merger can collapse to form globular clusters (GCs) within a few Myr. The…

天体物理学 · 物理学 2007-05-23 Kenji Bekki , Warrick J. Couch , Duncan A. Forbes , M. A. Beasley

We use numerical simulations to investigate the orbital characteristics of tidal debris from satellites whose orbits are dragged into the plane of galactic disks by dynamical friction before disruption. We find that these satellites may…

天体物理学 · 物理学 2009-11-10 Andres Meza , Julio F. Navarro , Mario G. Abadi , Matthias Steinmetz

We explore the reliability and robustness in measuring the age, metallicity and mass of a sample of old Milky Way globular clusters (GCs) from their integrated light, setting the stage for using GCs as cosmic clocks at high redshift. We…

宇宙学与河外天体物理 · 物理学 2025-04-09 Elena Tomasetti , Michele Moresco , Carmela Lardo , Andrea Cimatti , Raul Jimenez

The metal-poor sub-population of globular cluster (GC) systems exhibits a correlation between the GC average colour and luminosity, especially in those systems associated with massive elliptical galaxies. More luminous (more massive) GCs…

We study the possibility that the Milky Way's cool stellar disc includes mergers with ancient stars. Galaxies are understood to form in a hierarchical manner, where smaller (proto-)galaxies merge into larger ones. Stars in galaxies, like…

星系天体物理 · 物理学 2022-07-27 Diane K. Feuillet , Sofia Feltzing , Christian Sahlholdt , Thomas Bensby

Using the ARTEMIS set of 45 high-resolution cosmological simulations, we investigate a range of merger-induced dynamical transformations of Milky Way-like galaxies. We first identify populations of accreted stars on highly radial orbits,…

星系天体物理 · 物理学 2022-08-11 Adam M. Dillamore , Vasily Belokurov , Andreea S. Font , Ian G. McCarthy

We present a novel method combining existing cosmological simulations and orbital integration to study the hierarchical assembly of globular cluster (GC) populations in the Milky Way (MW). Our method models the growth and evolution of GC…

星系天体物理 · 物理学 2026-01-14 Pierre Boldrini , Paola Di Matteo , Chervin Laporte , Oscar Agertz , Sergey Khoperskov , Giulia Pagnini

The bimodal globular cluster (GC) metallicity distributions of many giant elliptical galaxies are often cited as evidence for the formation of such galaxies through mergers involving gas-rich spirals. In such models, the metal- rich GCs are…

天体物理学 · 物理学 2011-02-11 Patrick Cote , Ronald O. Marzke , Michael J. West