The Local Group: The Ultimate Deep Field
arXiv:1603.02679 · doi:10.1093/mnrasl/slw121
Abstract
Near-field cosmology -- using detailed observations of the Local Group and its environs to study wide-ranging questions in galaxy formation and dark matter physics -- has become a mature and rich field over the past decade. There are lingering concerns, however, that the relatively small size of the present-day Local Group ( Mpc diameter) imposes insurmountable sample-variance uncertainties, limiting its broader utility. We consider the region spanned by the Local Group's progenitors at earlier times and show that it reaches co-moving Mpc in linear size (a volume of ) at . This size at early cosmic epochs is large enough to be representative in terms of the matter density and counts of dark matter halos with . The Local Group's stellar fossil record traces the cosmic evolution of galaxies with (reaching at ) over a region that is comparable to or larger than the Hubble Ultra-Deep Field (HUDF) for the entire history of the Universe. It is highly complementary to the HUDF, as it probes much fainter galaxies but does not contain the intrinsically rarer, brighter sources that are detectable in the HUDF. Archaeological studies in the Local Group also provide the ability to trace the evolution of individual galaxies across time as opposed to evaluating statistical connections between temporally distinct populations. In the JWST era, resolved stellar populations will probe regions larger than the HUDF and any deep JWST fields, further enhancing the value of near-field cosmology.
6 pages, 5 figures; MNRAS Letters, in press
References in corpus (7)
- The NumPy array: a structure for efficient numerical computation
- Introducing the Illustris Project: Simulating the coevolution of dark and visible matter in the Universe
- Properties of galaxies reproduced by a hydrodynamic simulation
- The Hubble Ultra Deep Field
- Satellite Dwarf Galaxies in a Hierarchical Universe: The Prevalence of Dwarf-Dwarf Major Mergers
- The Very Faint End of the UV Luminosity Function over Cosmic Time: Constraints from the Local Group Fossil Record
- Near-Field Limits on the Role of Faint Galaxies in Cosmic Reionization
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