On the origin of the stellar halo and multiple stellar populations in the globular cluster NGC 1851
arXiv:1109.4463 · doi:10.1111/j.1365-2966.2011.19856.x
Abstract
We propose that the observed stellar halo around the globular cluster (GC) NGC 1851 is evidence for its formation in the central region of its defunct host dwarf galaxy. We numerically investigate the long-term dynamical evolution of a nucleated dwarf galaxy embedded in a massive dark matter halo under the strong tidal field of the Galaxy. The dwarf galaxy is assumed to have a stellar nucleus (or a nuclear star cluster) that could be the progenitor for NGC 1851. We find that although the dark matter halo and the stellar envelope of the host dwarf of NGC 1851 can be almost completely stripped during its orbital evolution around the Galaxy, a minor fraction of stars in the dwarf can remain trapped by the gravitational field of the nucleus. The stripped nucleus can be observed as NGC 1851 with no/little dark matter whereas stars around the nucleus can be observed as a diffuse stellar halo around NGC 1851. The simulated stellar halo has a symmetric distribution with a power-law density slope of ~ -2 and shows no tidal tails within ~200pc from NGC 1851. We show that two GCs can merge with each other to form a new nuclear GC embedded in field stars owing to the low stellar velocity dispersion of the host dwarf. This result makes no assumption on the ages and/or chemical abundances of the two merging GCs. Thus the observed stellar halo and characteristic multiple stellar populations in NGC 1851 suggest that NGC 1851 could have formed initially in the central region of an ancient dwarf galaxy.
15 pages, 12 figures, accepted in MNRAS
References in corpus (14)
- Formation and Dynamical Evolution of Multiple Stellar Generations in Globular Clusters
- The ACS Virgo Cluster Survey. VIII. The Nuclei of Early-Type Galaxies
- The ACS Survey of Galactic Globular Clusters. III. The Double Subgiant Branch of NGC 1851
- An abundance analysis of bright giants in the globular cluster NGC 1851
- Multiple stellar populations in Magellanic Clouds clusters. I. An ordinary feature for intermediate age globulars in the LMC?
- A large C+N+O abundance spread in giant stars of the globular cluster NGC 1851
- The formation of ultra-compact dwarf galaxies and nucleated dwarf galaxies
- Self-consistent simulations of Nuclear Cluster formation through Globular Cluster orbital decay and merging
- Merging of globular clusters within inner galactic regions. II. The Nuclear Star Cluster formation
- Whiting 1: the youngest globular cluster associated with the Sgr dSph
- On the origin of double main-sequence turn-offs in star clusters of the Magellanic Clouds
- The Horizontal Branch of NGC 1851: Constraints on the Cluster Subpopulations
- The globular cluster AM 4: yet another young globular associated with the Sgr Dwarf Spheroidal galaxy?
- Spectroscopic observations of a sample of dwarf spiral galaxies. II- Abundance gradients
Cited by in corpus (58)
- The Ages of 55 Globular Clusters as Determined Using an Improved delta V_TO^HB Method Along with Color-Magnitude Diagram Constraints, and Their Implications for Broader Issues
- Paving the way for the JWST: witnessing globular cluster formation at z>3
- Reverse engineering the Milky Way
- Iron and s-elements abundance variations in NGC5286: comparison with anomalous globular clusters and Milky Way satellites
- Iron and neutron-capture element abundance variations in the globular cluster M2 (NGC 7089)
- The Hubble Space Telescope UV Legacy Survey of Galactic Globular Clusters. XIX. A Chemical Tagging of the Multiple Stellar Populations Over the Chromosome Maps
- Do globular clusters possess Dark Matter halos? A case study in NGC 2419
- A Spectroscopic Analysis of the Galactic Globular Cluster NGC 6273 (M19)
- The double sub-giant branch of NGC 6656 (M22): a chemical characterization
- CNO abundances in the globular clusters NGC 1851 and NGC 6752
- The Outer Envelopes of Globular Clusters. II. NGC 1851, NGC 5824 and NGC 1261
- Star Formation Histories of Globular Clusters with Multiple Populations. I. ω Cen, M22, and NGC 1851
- The Na-O anticorrelation in horizontal branch stars. I. NGC 2808
- NLTE Chemical abundances in Galactic open and globular clusters
- The halo+cluster system of the Galactic globular cluster NGC1851
- The Outer Envelopes of Globular Clusters. I. NGC 7089 (M2)
- Star Clusters in Evolving Galaxies
- The Na-O anticorrelation in horizontal branch stars. II. NGC1851
- Gas depletion in primordial globular clusters due to accretion onto stellar-mass black holes
- A search for stellar tidal debris of defunct dwarf galaxies around globular clusters in the inner Galactic halo
- Globular Clusters and Dark Satellite Galaxies through the Stream Velocity
- Multiple Stellar Populations of Globular Clusters from Homogenous Ca by Photometry I. M22 (NGC 6656)
- Tails and streams around the Galactic globular clusters NGC1851, NGC1904, NGC2298 and NGC2808
- Spectroscopic Signatures of Extra-Tidal Stars Around the Globular Clusters NGC 6656 (M22), NGC 3201 and NGC 1851 from RAVE
- A critical look at the merger scenario to explain multiple populations and rotation in iron-complex globular clusters
- C and N abundances of MS and SGB stars in NGC 1851
- Stellar envelopes of globular clusters embedded in dark mini-haloes
- NGC 5824: a luminous outer halo globular cluster with an intrinsic abundance spread
- The Fornax dwarf galaxy as a remnant of recent dwarf-dwarf merging in the Local Group
- The Next Generation Virgo Cluster Survey. XXXIV. Ultra-Compact Dwarf (UCD) Galaxies in the Virgo Cluster
- Spectroscopic analysis of the two subgiant branches of the globular cluster NGC1851
- Low-resolution Spectroscopy for the Globular Clusters with Signs of Supernova Enrichment: M22, NGC 1851 and NGC 288
- The Supersonic Project: Shining Light on SIGOs - a New Formation Channel for Globular Clusters
- A new model for the multiple stellar populations within Terzan 5
- The origin of discrete multiple stellar populations in globular clusters
- The complex stellar system M 22: confirming abundance variations with high precision differential measurements
- Globular cluster formation with multiple stellar populations from hierarchical star cluster complexes
- Ultra-Compact Dwarfs around NGC 3268
- Mergers of multi-metallic globular clusters: The role of dynamics
- Formation of globular clusters with multiple stellar populations from massive gas clumps in high-z gas-rich dwarf galaxies
- The cusp-core problem in gas-poor dwarf spheroidal galaxies
- Cyanogen in NGC 1851 RGB and AGB Stars: Quadrimodal Distributions
- Confirming the intrinsic abundance spread in the globular cluster NGC 6273 (M 19) with calcium triplet spectroscopy
- Spectroscopic hint of a cold stream in the direction of the globular cluster NGC 1851
- Formation of globular clusters with internal abundance spreads in r-process elements: strong evidence for prolonged star formation
- The Horizontal Branch of NGC 1851: Constraints from its RR Lyrae Variables
- Simulations of globular clusters within their parent galaxies: Metallicity spreads and anomalous precursor populations
- New cluster members and halo stars of the Galactic globular cluster NGC 1851
- Gaia-ESO Survey: Detailed elemental abundances in red giants of the peculiar globular cluster NGC 1851
- Multiple Stellar Populations of Globular Clusters from Homogeneous Ca-CN-CH-NH Photometry. VI. M3 (NGC 5272) is not a Prototypical Normal Globular Cluster
- Properties of globular clusters formed in dark matter mini-halos
- Spatial and kinematic segregation in star cluster merger remnants
- Formation of massive globular clusters with dark matter and its implication on dark matter annihilation
- Absence of obvious tidal tails around the globular cluster NGC 6397
- A new formation model for omega Centauri: the crossroad of astrophysical processes
- Multiple Stellar Populations outside the tidal radius of NGC1851 through Gaia DR3 XP Spectra
- Galactic or extragalactic chemical tagging for NGC3201? Discovery of an anomalous CN-CH relation
- The Supersonic Project: SIGOs, a Proposed Progenitor to Globular Clusters, and their Connections to Gravitational Wave Anisotropies