The metallicity distribution of the halo and the satellites of the Milky way in the hierarchical merging paradigm
arXiv:0807.1502 · doi:10.1051/0004-6361:20079330
Abstract
To account for the observed differential metallicity distribution (DMD) of the Milky Way halo, a semi-analytical model is presented in the framework of the hierarchical merging paradigm for structure formation. It is assumed that the Milky Way halo is composed of a number of sub-haloes with properties either as observed in the dwarf satellite galaxies of the Local group (shape of metallicity distribution, effective yield) or derived from calculations of structure formation (sub-halo distribution function). With reasonable assumptions for the parameters involved, we find that the overall shape and effective yield of the Galactic halo DMD can be reproduced in the framework of such a simple model. The low metallicity tail of the DMD presents a defficiency of stars with respect to the simple model predictions (akin to the G-dwarf problem in the solar neighborhood); it is suggested that an early infall phase can account for that problem, as well as for the observed DMDs of dwarf satellite galaxies.Accretion of galaxies similar (but not identical) to the progenitors of present day dwarf satellites of the Milky Way may well have formed the Galactic halo.
10 pages, 6 fig. to appear in Astronomy and Astrophysics
References in corpus (7)
- The accretion origin of the Milky Way's stellar halo
- The Geneva-Copenhagen Survey of the Solar neighbourhood II. New uvby calibrations and rediscussion of stellar ages, the G dwarf problem, age-metallicity diagram, and heating mechanisms of the disk
- Downsizing by Shutdown in Red Galaxies
- Life and times of dwarf spheroidal galaxies
- Revisiting two local constraints of the Galactic chemical evolution
- Analytical Approach to Subhaloes Population in Dark Matter Haloes
- The chemical evolution of the Milky Way in a cosmological context
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