Numerical simulations of dwarf galaxy merger trees
arXiv:1406.2469 · doi:10.1093/mnras/stu1071
Abstract
We investigate the evolution of dwarf galaxies using N -body/SPH simulations that incorporate their formation histories through merger trees constructed using the ex- tended Press-Schechter formalism. The simulations are computationally cheap and have high spatial resolution. We compare the properties of galaxies with equal final mass but with different merger histories with each other and with those of observed dwarf spheroidals and irregulars. We show that the merger history influences many observable dwarf galaxy proper- ties. We identify two extreme cases that make this influence stand out most clearly: (i) merger trees with one massive progenitor that grows through relatively few mergers and (ii) merger trees with many small progenitors that merge only quite late. At a fixed halo mass, a type (i) tree tends to produce galaxies with larger stellar masses, larger half-light radii, lower central surface brightness, and since fewer potentially an- gular momentum cancelling mergers are required to build up the final galaxy, a higher specific angular momentum, compared with a type (ii) tree. We do not perform full-fledged cosmological simulations and therefore cannot hope to reproduce all observed properties of dwarf galaxies. However, we show that the simulated dwarfs are not unsimilar to real ones.
19 pages, 17 figures, 3 tables
References in corpus (21)
- Star Formation and Feedback in Smoothed Particle Hydrodynamic Simulations--I. Isolated Galaxies
- Star formation efficiency in galaxy interactions and mergers: a statistical study
- Kinematic Structure of Merger Remnants
- The DART imaging and CaT survey of the Fornax Dwarf Spheroidal Galaxy
- Generating Dark Matter Halo Merger Trees
- Cosmological puzzle resolved by stellar feedback in high redshift galaxies
- Does the Fornax dwarf spheroidal have a central cusp or core?
- The origin of dwarf ellipticals in the Virgo cluster
- Leo A: A Late-Blooming Survivor of the Epoch of Reionization in the Local Group
- Metal and molecule cooling in simulations of structure formation
- Metal and molecule cooling in simulations of structure formation
- The mass and velocity anisotropy of the Carina, Fornax, Sculptor and Sextans dwarf spheroidal galaxies
- Simulations of the formation and evolution of isolated dwarf galaxies
- Dark Matter Halos with Cores from Hierarchical Structure Formation
- Galaxy populations in the Antlia cluster. I. Photometric properties of early-type galaxies
- The internal dynamics of the Local Group dwarf elliptical galaxies NGC147, NGC185, and NGC205
- The Chemical Abundances of the Stellar Populations in the Leo I and Leo II dSph Galaxies
- Deconstructing dwarf galaxies: a Suprime-Cam survey of Andromeda II
- Hubble Space Telescope Survey of the Perseus Cluster: II. Photometric scaling relations in different environments
- The Dynamics and Metallicity Distribution of the Distant Dwarf Galaxy VV124
- Photo-evaporation by thermal winds in dwarf galaxies
Cited by in corpus (10)
- NIHAO XIV: Reproducing the observed diversity of dwarf galaxy rotation curve shapes in LCDM
- Gaseous infall triggering starbursts in simulated dwarf galaxies
- Satellite dwarf galaxies: Stripped but not quenched
- Simulations of galaxies formed in warm dark matter halos of masses at the filtering scale
- Isolated elliptical galaxies and their globular cluster systems. II. NGC 7796 - globular clusters, dynamics, companion
- On the dark matter haloes inner structure and galaxy morphology
- Central X-ray point-sources found to be abundant in low-mass, late-type galaxies predicted to contain an intermediate-mass black hole
- HI properties and star formation history of a fly-by pair of blue compact dwarf galaxies
- Evolution of dwarf galaxy observable parameters
- "Observations" of simulated dwarf galaxies: Star-formation histories from color-magnitude diagrams