Leaving the dark ages with AMIGA
arXiv:1411.5288 · doi:10.1088/0067-0049/216/1/13
Abstract
We present an Analytic Model of Intergalactic-medium and GAlaxy evolution since the dark ages. AMIGA is in the spirit of the popular semi-analytic models of galaxy formation, although it does not use halo merger trees but interpolates halo properties in grids that are progressively built. This strategy is less memory-demanding and allows one to start the modeling at redshifts high enough and halo masses low enough to have trivial boundary conditions. The number of free parameters is minimized by making the causal connection between physical processes usually treated as independent from each other, which leads to more reliable predictions. But the strongest points of AMIGA are: i) the inclusion of molecular cooling and metal-poor, population III (Pop III) stars, with the most dramatic feedback, and ii) the accurate follow-up of the temperature and volume filling factor of neutral, singly, and doubly ionized regions, taking into account the distinct halo mass functions in those environments. We find the following general results. Massive Pop III stars determine the IGM metallicity and temperature, and the growth of spheroids and disks is self-regulated by that of massive black holes developed from the remnants of those stars. Yet, the properties of normal galaxies and active galactic nuclei appear to be quite insensitive to Pop III star properties owing to the much higher yield of ordinary stars compared to Pop III stars and the dramatic growth of MBHs when normal galaxies begin to develop, which cause the memory loss of the initial conditions.
18 pages, 7 figures, accepted for publication in ApJS
References in corpus (12)
- Piecing Together the X-ray Background: Bolometric Corrections for Active Galactic Nuclei
- The Formation of Population III Binaries from Cosmological Initial Conditions
- The MORGANA model for the rise of galaxies and active nuclei
- Keeping the Universe ionised: Photo-heating and the clumping factor of the high-redshift intergalactic medium
- The Evolution of Stellar Mass and the Implied Star Formation History
- Self-regulated reionization
- Resolving the Formation of Protogalaxies. I. Virialization
- A downturn in intergalactic CIV as redshift 6 is approached
- How Very Massive Metal Free Stars Start Cosmological Reionization
- Exploring the Energetics of Intracluster Gas with a Simple and Accurate Model
- Long-Term Evolution of Massive Black Hole Binaries. III. Binary Evolution in Collisional Nuclei
- The nature of dark matter and the density profile and central behavior of relaxed halos
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- Lyman- Emitting Galaxies (LAEs) at Cosmic Dawn: Implications and Predictions