The Chemical Evolution of Dwarf Spheroidal Galaxies: Dissecting the Inner Regions and their Stellar Populations
arXiv:0803.0385 · doi:10.1111/j.1365-2966.2008.13175.x
Abstract
Using 3-dimensional hydrodynamical simulations of isolated dwarf spheroidal galaxies (dSphs), we undertake an analysis of the chemical properties of their inner regions, identifying the respective roles played by Type Ia (SNe Ia) and Type II (SNe II) supernovae. The effect of inhomogeneous pollution from SNe Ia is shown to be prominent within two core radii, with the stars forming therein amounting to ~20% of the total. These stars are relatively iron-rich and alpha-element-depleted compared to the stars forming in the rest of the galaxy. At odds with the projected stellar velocity dispersion radial profile, the actual 3-dimensional one shows a depression in the central region, where the most metal-rich (ie. [Fe/H]-rich) stars are partly segregated. This naturally results in two different stellar populations, with an anti-correlation between [Fe/H] and velocity dispersion, in the same sense as that observed in the Sculptor and Fornax dSphs. Because the most iron-rich stars in our model are also the most alpha-depleted, a natural prediction and test of our model is that the same radial segregation effects should exist between [alpha/Fe] and velocity dispersion.
10 pages, 7 figures, MNRAS accepted
References in corpus (9)
- The Tidal Evolution of Local Group Dwarf Spheroidals
- The Velocity Dispersion Profile of the Remote Dwarf Spheroidal Galaxy Leo I: A Tidal Hit and Run?
- Spatially resolved spectroscopy of early-type galaxies over a range in mass
- The Different Physical Mechanisms that Drive the Star-Formation Histories of Giant and Dwarf Galaxies
- Satellites of Simulated Galaxies: survival, merging, and their relation to the dark and stellar halos
- Effects of the galactic winds on the stellar metallicity distribution of dwarf spheroidal galaxies
- The usage of Stromgren photometry in studies of Local Group Dwarf Spheroidal Galaxies - Application to Draco: a new catalogue of Draco members and a study of the metallicity distribution function and radial gradients
- Modeling the chemical evolution of Omega Centauri using three-dimensional hydrodynamical simulations
- The Chemistry of the Local Group