Dancing in the void: hydrodynamical N-body simulations of the extremely metal poor galaxy DDO 68
arXiv:2110.13175 · doi:10.1093/mnras/stab3054
Abstract
Using hydrodynamical -body simulations, we show that the observed structure and kinematics of the extremely metal-poor, dwarf irregular galaxy DDO 68 is compatible with a merger event with at least two smaller satellite galaxies. We were able to obtain a self-consistent model that simultaneously reproduces several of its observed features, including: the very asymmetric and disturbed shape of the stellar component, the overall HI distribution and its velocity field, the arc-like stellar structure to the west, the low-surface brightness stellar stream to the north. The model implies the interaction of the main progenitor of DDO 68 with two systems with dynamical masses and almost -- 1/20 and 1/150 times the dynamical mass of DDO 68, respectively. We show that the merger between DDO 68 and the most massive of its satellites offers a route to explain the large offset of DDO 68 from the mass-metallicity relation. Assuming that the interacting galaxies have metallicities prior to the merger compatible with those of galaxies with similar stellar masses, we provide quantitative evidence that gas mixing alone does not suffice at diluting the gas of the two components; according to our simulations, the HII regions observed along the Cometary Tail trace the low metallicity of the accreted satellite rather than that of DDO 68's main body. In this case, the mass corresponding to the low metallicity is that of the secondary body and DDO 68 becomes consistent with the mass-metallicity relation.
Accepted for publication in MNRAS. 17 pages, 10 figures
References in corpus (19)
- High-resolution mass models of dwarf galaxies from LITTLE THINGS
- The Origin and Evolution of the Mass-Metallicity Relationship for Galaxies: Results from Cosmological N-Body Simulations
- The stellar mass-halo mass relation of isolated field dwarfs: a critical test of CDM at the edge of galaxy formation
- N-body simulations of gravitational dynamics
- Empirical strong-line oxygen abundance calibrations from galaxies with electron temperature measurements
- Variation of galactic cold gas reservoirs with stellar mass
- MMT observations of new extremely metal-poor emission-line galaxies in the Sloan Digital Sky Survey
- HI and star formation in the most metal-deficient galaxies
- J1234+3901: an extremely metal-deficient compact star-forming dwarf galaxy at redshift 0.133
- DDO 68: A flea with smaller fleas that on him prey
- The Little Cub: Discovery of an Extremely Metal-Poor Star-Forming Galaxy in the Local Universe
- Star formation histories of the LEGUS dwarf galaxies (III): the non-bursty nature of 23 star forming dwarf galaxies
- Hubble Space Telescope Observations of Two Faint Dwarf Satellites of Nearby LMC Analogs from MADCASH
- Discovery of a Gas-Rich Companion to the Extremely Metal-Poor Galaxy DDO 68
- XMP gas-rich dwarfs in Nearby Voids: results of SALT spectroscopy
- New candidates for extremely metal-poor emission-line galaxies in the SDSS/BOSS DR10
- New chemical evolution analytical solutions including environment effects
- Unusual void galaxy DDO68: implications of the HST resolved photometry
- An off-centred bulge or a satellite? Hydrodynamical -body simulations of the disc galaxy NGC 5474
Cited by in corpus (7)
- The evolution of CNO elements in galaxies
- Chemical and stellar properties of star-forming dwarf galaxies
- SIEGE IV: compact star clusters in cosmological simulations with high star formation efficiency and sub-parsec resolution
- The Smallest Scale of Hierarchy Survey (SSH) III. Dwarf-dwarf satellite merging phenomena in the low-mass regime
- DDO68 C: the actual appearance of a ghost satellite dwarf through adaptive optics at the Large Binocular Telescope
- Low Metallicity Galaxies from the Dark Energy Survey
- Stellar streams around dwarf galaxies in the Local Universe