Formation of the First Galaxies: Theory and Simulations
arXiv:1105.5701 · doi:10.1007/978-3-642-32362-1_4
Abstract
The properties of the first galaxies are shaped in large part by the first generations of stars, which emit high energy radiation and unleash both large amounts of mechanical energy and the first heavy elements when they explode as supernovae. We survey the theory of the formation of the first galaxies in this context, focusing on the results of cosmological simulations to illustrate a number of the key processes that define their properties. We first discuss the evolution of the primordial gas as it is incorporated into the earliest galaxies under the influence of the high energy radiation emitted by the earliest stars; we then turn to consider how the injection of heavy elements by the first supernovae transforms the evolution of the primordial gas and alters the character of the first galaxies. Finally, we discuss the prospects for the detection of the first galaxies by future observational missions, in particular focusing on the possibility that primordial star-forming galaxies may be uncovered.
31 pages, 19 figures; chapter to appear in 'The First Galaxies - Theoretical Predictions and Observational Clues'; corrected typo in equation (32); some figures downgraded
References in corpus (57)
- The James Webb Space Telescope
- Formation of Supermassive Black Holes by Direct Collapse in Pregalactic Halos
- The First Galaxies
- Supermassive black hole formation during the assembly of pre-galactic discs
- Simulations on a Moving Mesh: The Clustered Formation of Population III Protostars
- The Formation and Fragmentation of Disks around Primordial Protostars
- Protostar Formation in the Early Universe
- The Formation of Population III Binaries from Cosmological Initial Conditions
- The spectral evolution of the first galaxies. I. James Webb Space Telescope detection limits and color criteria for population III galaxies
- Fragmentation of star-forming clouds enriched with the first dust
- Accretion onto the First Stellar Mass Black Holes
- Fluctuations in the High-Redshift Lyman-Werner Background: Close Halo Pairs as the Origin of Supermassive Black Holes
- Can Supermassive Black Holes Form in Metal-Enriched High-Redshift Protogalaxies ?
- Population III stars: hidden or disappeared ?
- The First Galaxies: Assembly, Cooling and the Onset of Turbulence
- Population III star formation in a Lambda CDM universe, II: Effects of a photodissociating background
- Probing the Formation of the First Low-Mass Stars with Stellar Archaeology
- Early Cosmological HII/HeIII Regions and Their Impact on Second-Generation Star Formation
- The Destruction of Cosmological Minihalos by Primordial Supernovae
- The aftermath of the first stars: massive black holes
- Pre-galactic metal enrichment - The chemical signatures of the first stars
- Two populations of metal-free stars in the early Universe
- Suppression of H_2 Cooling in the Ultraviolet Background
- The HII Region of a Primordial Star
- Resolving the Formation of Protogalaxies. I. Virialization
- Metal and molecule cooling in simulations of structure formation
- Metal and molecule cooling in simulations of structure formation
- Uncovering the Chemical Signature of the First Stars in the Universe
- The interplay between chemical and mechanical feedback from the first generation of stars
- On the formation of dwarf galaxies and stellar halos
- The Biermann Battery in Cosmological MHD Simulations of Population III Star Formation
- Occurrence of Metal-free Galaxies in the Early Universe
- Formation of Massive Primordial Stars in a Reionized Gas
- Metal-Free Gas Supply at the Edge of Reionization: Late-Epoch Population III Star Formation
- Significant primordial star formation at redshifts z ~ 3-4
- The First Galaxies: Assembly of Disks and Prospects for Direct Detection
- The minimum stellar metallicity observable in the Galaxy
- The Transition from the First Stars to the Second Stars in the Early Universe
- The Impact of HD Cooling on the Formation of the First Stars
- UV Radiative Feedback on High-Redshift Proto-Galaxies
- Fossil remnants of reionization in the halo of the Milky Way
- The influence of magnetic fields on the thermodynamics of primordial star formation
- On the First Generation of Stars
- Lower Metal Enrichment of Virialized Gas in Minihalos
- The role of HD cooling in primordial star formation
- The escape of ionising radiation from high-redshift dwarf galaxies
- Impact of Cosmic Rays on Population III Star Formation
- Very Massive Stars in High-Redshift Galaxies
- Cosmic rays and the primordial gas
- Suppression of accretion onto low-mass Population III stars
- Pop. III stars from turbulent fragmentation at redshift ~ 11
- Mixing of Primordial Gas in Lyman Break Galaxies
- First supernovae in dwarf protogalaxies
- The complexity that the first stars brought to the Universe: Fragility of metal enriched gas in a radiation field
- Single and binary evolution of Population III stars and their supernovae light curves
- The influence of ultra-high-energy cosmic rays on star formation in the early universe
- Random Primordial Magnetic Fields and the Gas Content of Dark Matter Halos