Fossil remnants of reionization in the halo of the Milky Way
arXiv:0810.3712 · doi:10.1086/595814
Abstract
Our recently completed one billion particle Via Lactea II simulation of a Milky Way-sized dark matter halo resolves over 50,000 gravitationally bound clumps orbiting today within the virialized region of the main host. About 2,300 of these subhalos have one or more "progenitors" above 1e6 Msun at redshift 11, i.e. massive enough for their gas to have cooled via excitation of H2 and fragmented prior to the epoch of cosmic reionization. We count 4,500 such progenitors: if these were able to convert a fraction of their gas content into very metal-poor stars with a Salpeter initial mass function (IMF), they would be shining today with a visual magnitude M_V=6.7 per solar mass in stars. Assuming a universal baryon fraction, we show that mean star formation efficiencies as low as 0.1% in progenitors below 1e8 Msun would overproduce the abundance of the faint Galatic dwarf spheroidals observed by the Sloan Digital Sky Survey. Star formation at first light must have occurred either with an IMF lacking stars below 0.9 Msun, or was intrinsically very inefficient in small dark matter halos. If the latter, our results may be viewed as another hint of a minimum scale in galaxy formation.
5 pages, 4 figures, ApJL, in press
References in corpus (12)
- Five-Year Wilkinson Microwave Anisotropy Probe (WMAP) Observations: Likelihoods and Parameters from the WMAP data
- 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
- Nucleosynthetic signatures of the first stars
- A common mass scale for satellite galaxies of the Milky Way
- Hundreds of Milky Way Satellites? Luminosity Bias in the Satellite Luminosity Function
- The Luminosity Function of the Milky Way Satellites
- A Revised Model for the Formation of Disk Galaxies: Low Spin and Dark-Halo Expansion
- Population III star formation in a Lambda CDM universe, I: The effect of formation redshift and environment on protostellar accretion rate
- Dark matter subhalos and the dwarf satellites of the Milky Way
- Delving Deeper into the Tumultuous Lives of Galactic Dwarfs: Modeling Star Formation Histories
- Dependence of the Local Reionization History on Halo Mass and Environment: Did Virgo Reionize the Local Group?
Cited by in corpus (12)
- Ultra faint dwarfs: probing early cosmic star formation
- Self-Consistent Modeling of Reionization in Cosmological Hydrodynamical Simulations
- Supersonic Relative Velocity between Dark Matter and Baryons: A Review
- ATIC, PAMELA, HESS, Fermi and nearby Dark Matter subhalos
- Near-Field Limits on the Role of Faint Galaxies in Cosmic Reionization
- Galaxy formation with radiative and chemical feedback
- Low-mass suppression of the satellite luminosity function due to the supersonic baryon--cold-dark-matter relative velocity
- Reversal of Fortune: Increased Star Formation Efficiencies in the Early Histories of Dwarf Galaxies?
- The baryon cycle of Seven Dwarfs with superbubble feedback
- Towards Studying Hierarchical Assembly in Real Time: A Milky Way Progenitor Galaxy at z = 2.36 under the Microscope
- On the Size Evolution of a Galactic Disk in Hierarchical Merging of Cold Dark Matter Halos
- The DORCHA suite: nature, nurture, and the phase space distribution of the Milky Way's high redshift progenitors today