How to make an ultra-faint dwarf spheroidal galaxy: tidal stirring of disky dwarfs with shallow dark matter density profiles
arXiv:1201.5784 · doi:10.1088/2041-8205/751/1/L15
Abstract
In recent years the Sloan Digital Sky Survey has unraveled a new population of ultra-faint dwarf galaxies (UFDs) in the vicinity of the Milky Way (MW) whose origin remains a puzzle. Using a suite of collisionless N-body simulations, we investigate the formation of UFDs in the context of the tidal stirring model for the formation of dwarf spheroidal galaxies in the Local Group (LG). Our simulations are designed to reproduce the tidal interactions between MW-sized host galaxies and rotationally supported dwarfs embedded in 10^9 M_sun dark matter (DM) halos. We explore a variety of inner density slopes ρ\propto r^{-α} for the dwarf DM halos, ranging from core-like (α= 0.2) to cuspy (α= 1), and different dwarf orbital configurations. Our experiments demonstrate that UFDs can be produced via tidal stirring of disky dwarfs on relatively tight orbits, consistent with a redshift of accretion by the host galaxy of z \sim 1, and with intermediate values for the halo inner density slopes (ρ\propto r^{-0.6}). The inferred slopes are in excellent agreement with those resulting from both the modeling of the rotation curves of dwarf galaxies and recent cosmological simulations of dwarf galaxy formation. Comparing the properties of observed UFDs with those of their simulated counterparts, we find remarkable similarities in terms of basic observational parameters. We conclude that tidal stirring of rotationally supported dwarfs represents a viable mechanism for the formation of UFDs in the LG environment.
6 pages, 4 figures, revised version accepted for publication in ApJ Letters
References in corpus (9)
- The Kinematics of the Ultra-Faint Milky Way Satellites: Solving the Missing Satellite Problem
- Cats and Dogs, Hair and A Hero: A Quintet of New Milky Way Companions
- A common mass scale for satellite galaxies of the Milky Way
- The central slope of dark matter cores in dwarf galaxies: Simulations vs. THINGS
- Leo V: A Companion of a Companion of the Milky Way Galaxy
- On the Efficiency of the Tidal Stirring Mechanism for the Origin of Dwarf Spheroidals: Dependence on the Orbital and Structural Parameters of the Progenitor Disky Dwarfs
- Mass modelling of dwarf spheroidal galaxies: the effect of unbound stars from tidal tails and the Milky Way
- Evolutionary tracks of tidally stirred disky dwarf galaxies
- Tidal stirring of Milky Way satellites: a simple picture with the integrated tidal force
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