PROBING BARYONIC PROCESSES AND GASTROPHYSICS IN THE FORMATION OF THE MILKY WAY DWARF SATELLITES. I. METALLICITY DISTRIBUTION PROPERTIES

The Milky Way (MW) dwarf satellites, as the smallest galaxies discovered in the present-day universe, are potentially powerful probes to various baryonic processes in galaxy formation occurring in the early universe. In this paper, we study the chemical properties of the stars in the dwarf satellite...

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Veröffentlicht in:The Astrophysical journal 2014-08, Vol.791 (1), p.1-19
Hauptverfasser: Hou, Jun, Yu, Qingjuan, Lu, Youjun
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Sprache:eng
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Zusammenfassung:The Milky Way (MW) dwarf satellites, as the smallest galaxies discovered in the present-day universe, are potentially powerful probes to various baryonic processes in galaxy formation occurring in the early universe. In this paper, we study the chemical properties of the stars in the dwarf satellites around the MW-like host galaxies, and explore the possible effects of several baryonic processes, including supernova (SN) feedback, the reionization of the universe, and H sub(2) cooling, and how current and future observations may put some constraints on these processes. We use a semi analytical model to generate MW-like galaxies, for which a fiducial model can reproduce the luminosity function and the stellar metallicity-stellar mass correlation of the MW dwarfs. Using the simulated MW-like galaxies, we focus on investigating three metallicity properties of their dwarfs: the stellar metallicity-stellar mass correlation of the dwarf population, and the metal-poor and metal-rich tails of the stellar metallicity distribution in individual dwarfs.
ISSN:0004-637X
1538-4357
DOI:10.1088/0004-637X/791/1/8