Formation of ultra-compact blue dwarf galaxies and their evolution into nucleated dwarfs
arXiv:1510.04388 · doi:10.1088/2041-8205/812/1/L14
Abstract
We propose that there is an evolutionary link between ultra-compact blue dwarf galaxies (UCBDs) with active star formation and nucleated dwarfs based on the results of numerical simulations of dwarf-dwarf merging. We consider the observational fact that low-mass dwarfs can be very gas-rich, and thereby investigate the dynamical and chemical evolution of very gas-rich, dissipative dwarf-dwarf mergers. We find that the remnants of dwarf-dwarf mergers can be dominated by new stellar populations formed from the triggered starbursts and consequently can have blue colors and higher metallicities (Z~[0.2-1]Z_sun). We also find that the remnants of these mergers can have rather high mass-densities (10^4 M_sun pc^-3) within the central 10 pc and small half-light radii (40-100 pc). The radial stellar structures of some merger remnants are similar to those of nucleated dwarfs. Star formation can continue in nuclear gas disks (R<100 pc) surrounding stellar galactic nuclei (SGNs) so that the SGNs can finally have multiple stellar populations with different ages and metallicities. These very compact blue remnants can be identified as UCBDs soon after merging and as nucleated dwarfs after fading of young stars. We discuss these results in the context of the origins of metal-rich ultra-compact dwarfs (UCDs) and SGNs.
15 pages, four figures, published in ApJL (Bekki, 2015, ApJ, 812, L14)
References in corpus (12)
- Evolutionary Stellar Population Synthesis with MILES. Part I: The Base Models and a New Line Index System
- The ACS Virgo Cluster Survey. VIII. The Nuclei of Early-Type Galaxies
- A Supermassive Black Hole in an Ultracompact Dwarf Galaxy
- Nuclear star clusters in 228 spiral galaxies in the HST/WFPC2 archive: catalogue and comparison to other stellar systems
- Formation of blue compact dwarf galaxies from merging and interacting gas-rich dwarfs
- TiNy Titans: The Role of Dwarf-Dwarf Interactions in the Evolution of Low Mass Galaxies
- Dynamical masses of ultra-compact dwarf galaxies in Fornax
- The formation of stellar nuclear discs in bar-induced gas inflows
- Dissipative transformation of non-nucleated dwarf galaxies into nucleated systems
- Numerical simulations of dwarf galaxy merger trees
- Ultracompact Blue Dwarf Galaxies: Hubble Space Telescope Imaging and Stellar Population Analysis
- Formation of emission line dots and extremely metal-deficient dwarfs from almost dark galaxies
Cited by in corpus (17)
- Stellar populations and star formation histories of the nuclear star clusters in six nearby galaxies
- Suppression of star formation in dwarf galaxies by grain photoelectric feedback
- Virgo Redux: The Masses and Stellar Content of Nuclei in Early-Type Galaxies from Multi-Band Photometry and Spectroscopy
- Implications for the origin of early-type dwarf galaxies --- the discovery of rotation in isolated, low-mass early-type galaxies
- A new model for the multiple stellar populations within Terzan 5
- Globular Clusters, Ultracompact Dwarfs, and Dwarf Galaxies in Abell 2744 at the Redshift of 0.308
- UGC 3672: An unusual merging triplet of gas-rich galaxies in the Lynx-Cancer void
- A Deep View into the Nucleus of the Sagittarius Dwarf Spheroidal Galaxy with MUSE. III. Discrete multi-component population-dynamical models based on the Jeans equations
- The assembly history of the nearest S0 galaxy NGC 3115 from its kinematics out to six half-light radii
- Formation and evolution of blue compact dwarfs: The origin of their steep rotation curves
- Formation of Blue-cored Dwarf Early-type Galaxies in a Cluster Environment: a Kinematical Perspective
- Formation of ultra-compact dwarf galaxies from supergiant molecular clouds
- Chemical enrichment by collapsars as the origin of the unusually high [Ba/Fe] in a massive star cluster of the dwarf galaxy NGC 1569
- Too small to succeed: the difficulty of sustaining star formation in low-mass haloes
- Galaxy mass dependence of metal-enrichment of nuclear star clusters
- Resolved nuclear kinematics link the formation and growth of nuclear star clusters with the evolution of their early and late-type hosts
- Understanding the origin of early-type dwarfs: The spectrophotometric study of CGCG014-074